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<ep-patent-document id="EP09837260B9W1" file="EP09837260W1B9.xml" lang="en" country="EP" doc-number="2375827" kind="B9" correction-code="W1" date-publ="20230412" status="c" dtd-version="ep-patent-document-v1-6">
<SDOBI lang="en"><B000><eptags><B001EP>ATBECHDEDKESFRGBGRITLILUNLSEMCPTIESILTLVFIROMKCY..TRBGCZEEHUPLSK..HRIS..MTNO....SM..................</B001EP><B005EP>J</B005EP><B007EP>2.0.21 -  2999001/0</B007EP><B078EP><date>20140530</date></B078EP></eptags></B000><B100><B110>2375827</B110><B120><B121>CORRECTED EUROPEAN PATENT SPECIFICATION</B121></B120><B130>B9</B130><B132EP>B1</B132EP><B140><date>20230412</date></B140><B150><B151>W1</B151><B155><B1551>de</B1551><B1552>Beschreibung</B1552><B1551>en</B1551><B1552>Description</B1552><B1551>fr</B1551><B1552>Description</B1552><B1551>de</B1551><B1552>Ansprüche DE</B1552><B1551>en</B1551><B1552>Claims DE</B1552><B1551>fr</B1551><B1552>Revendications DE</B1552><B1551>de</B1551><B1552>Ansprüche EN</B1552><B1551>en</B1551><B1552>Claims EN</B1552><B1551>fr</B1551><B1552>Revendications EN</B1552><B1551>de</B1551><B1552>Ansprüche FR</B1552><B1551>en</B1551><B1552>Claims FR</B1552><B1551>fr</B1551><B1552>Revendications FR</B1552></B155></B150><B190>EP</B190></B100><B200><B210>09837260.0</B210><B220><date>20090701</date></B220><B240><B241><date>20101108</date></B241></B240><B250>zh</B250><B251EP>en</B251EP><B260>en</B260></B200><B300><B310>200910002367</B310><B320><date>20090106</date></B320><B330><ctry>CN</ctry></B330></B300><B400><B405><date>20230412</date><bnum>202315</bnum></B405><B430><date>20111012</date><bnum>201141</bnum></B430><B450><date>20130828</date><bnum>201335</bnum></B450><B452EP><date>20130516</date></B452EP><B472><B475><date>20130828</date><ctry>AT</ctry><date>20130828</date><ctry>BG</ctry><date>20130828</date><ctry>CY</ctry><date>20130828</date><ctry>CZ</ctry><date>20130828</date><ctry>DK</ctry><date>20130828</date><ctry>EE</ctry><date>20130828</date><ctry>FI</ctry><date>20131129</date><ctry>GR</ctry><date>20130828</date><ctry>HR</ctry><date>20090701</date><ctry>HU</ctry><date>20131228</date><ctry>IS</ctry><date>20130828</date><ctry>LT</ctry><date>20130828</date><ctry>LV</ctry><date>20130828</date><ctry>MC</ctry><date>20130828</date><ctry>MK</ctry><date>20130828</date><ctry>MT</ctry><date>20131128</date><ctry>NO</ctry><date>20130828</date><ctry>PL</ctry><date>20131230</date><ctry>PT</ctry><date>20130828</date><ctry>RO</ctry><date>20130828</date><ctry>SE</ctry><date>20130828</date><ctry>SI</ctry><date>20130828</date><ctry>SK</ctry><date>20130828</date><ctry>SM</ctry><date>20130828</date><ctry>TR</ctry></B475></B472><B480><date>20230412</date><bnum>202315</bnum></B480></B400><B500><B510EP><classification-ipcr sequence="1"><text>H04W  52/00        20090101AFI20130328BHEP        </text></classification-ipcr><classification-ipcr sequence="2"><text>H04W  52/32        20090101ALI20130328BHEP        </text></classification-ipcr><classification-ipcr sequence="3"><text>H04L   1/00        20060101ALI20130328BHEP        </text></classification-ipcr></B510EP><B520EP><classifications-cpc><classification-cpc sequence="1"><text>H04L   1/0026      20130101 LI20130101BHEP        </text></classification-cpc><classification-cpc sequence="2"><text>H04L   1/003       20130101 LI20130101BHEP        </text></classification-cpc><classification-cpc sequence="3"><text>H04W  52/146       20130101 LA20130101BHEP        </text></classification-cpc><classification-cpc sequence="4"><text>H04W  52/242       20130101 LA20130101BHEP        </text></classification-cpc><classification-cpc sequence="5"><text>H04W  52/247       20130101 LA20130101BHEP        </text></classification-cpc><classification-cpc sequence="6"><text>H04W  52/325       20130101 FI20130101BHEP        </text></classification-cpc><classification-cpc sequence="7"><text>H04W  52/367       20130101 LA20130101BHEP        </text></classification-cpc></classifications-cpc></B520EP><B540><B541>de</B541><B542>VERFAHREN UND SYSTEM ZUR STEUERUNG DER ÜBERTRAGUNGSLEISTUNG EINES MEHRFACH GENUTZTEN PHYSIKALISCHEN UPLINK-KANALS</B542><B541>en</B541><B542>A PHYSICAL UPLINK SHARED CHANNEL TRANSMISSION POWER CONTROL METHOD AND SYSTEM</B542><B541>fr</B541><B542>PROCÉDÉ ET SYSTÈME DE COMMANDE DE PUISSANCE D'ÉMISSION DE CANAL PARTAGÉ DE LIAISON MONTANTE PHYSIQUE</B542></B540><B560><B561><text>EP-A1- 1 708 534</text></B561><B561><text>EP-A2- 1 699 144</text></B561><B561><text>CN-A- 1 734 967</text></B561><B561><text>CN-A- 1 829 111</text></B561><B561><text>CN-A- 101 132 203</text></B561><B561><text>CN-A- 101 237 260</text></B561><B561><text>CN-A- 101 448 310</text></B561><B561><text>US-A1- 2004 102 205</text></B561><B565EP><date>20120606</date></B565EP></B560></B500><B700><B720><B721><snm>DAI, Bo</snm><adr><str>ZTE Plaza
Keji Road South
Hi-Tech Industrial Park
Nanshan</str><city>Shenzhen
Guangdong 518057</city><ctry>CN</ctry></adr></B721><B721><snm>HAO, Peng</snm><adr><str>ZTE Plaza
Keji Road South
Hi-Tech Industrial Park
Nanshan</str><city>Shenzhen
Guangdong 518057</city><ctry>CN</ctry></adr></B721><B721><snm>ZUO, Zhisong</snm><adr><str>ZTE Plaza
Keji Road South
Hi-Tech Industrial Park
Nanshan</str><city>Shenzhen
Guangdong 518057</city><ctry>CN</ctry></adr></B721><B721><snm>YU, Guanghui</snm><adr><str>ZTE Plaza
Keji Road South
Hi-Tech Industrial Park
Nanshan</str><city>Shenzhen
Guangdong 518057</city><ctry>CN</ctry></adr></B721><B721><snm>XU, Jin</snm><adr><str>ZTE Plaza
Keji Road South
Hi-Tech Industrial Park
Nanshan</str><city>Shenzhen
Guangdong 518057</city><ctry>CN</ctry></adr></B721></B720><B730><B731><snm>ZTE Corporation</snm><iid>101115168</iid><irf>57948EP JW/ET</irf><adr><str>ZTE Plaza, 
Keji Road South, 
Hi-Tech Industrial Park, 
Nanshan District,</str><city>Shenzhen, Guangdong 518057</city><ctry>CN</ctry></adr></B731></B730><B740><B741><snm>Wihlsson, Joakim Per Magnus</snm><iid>100046290</iid><adr><str>Bjerkéns Patentbyrå KB</str><city>P.O. Box 5366
102 49 Stockholm</city><ctry>SE</ctry></adr></B741></B740></B700><B800><B840><ctry>AT</ctry><ctry>BE</ctry><ctry>BG</ctry><ctry>CH</ctry><ctry>CY</ctry><ctry>CZ</ctry><ctry>DE</ctry><ctry>DK</ctry><ctry>EE</ctry><ctry>ES</ctry><ctry>FI</ctry><ctry>FR</ctry><ctry>GB</ctry><ctry>GR</ctry><ctry>HR</ctry><ctry>HU</ctry><ctry>IE</ctry><ctry>IS</ctry><ctry>IT</ctry><ctry>LI</ctry><ctry>LT</ctry><ctry>LU</ctry><ctry>LV</ctry><ctry>MC</ctry><ctry>MK</ctry><ctry>MT</ctry><ctry>NL</ctry><ctry>NO</ctry><ctry>PL</ctry><ctry>PT</ctry><ctry>RO</ctry><ctry>SE</ctry><ctry>SI</ctry><ctry>SK</ctry><ctry>SM</ctry><ctry>TR</ctry></B840><B860><B861><dnum><anum>CN2009000740</anum></dnum><date>20090701</date></B861><B862>zh</B862></B860><B870><B871><dnum><pnum>WO2010078702</pnum></dnum><date>20100715</date><bnum>201028</bnum></B871></B870></B800></SDOBI>
<description id="desc" lang="en"><!-- EPO <DP n="1"> -->
<heading id="h0001"><b>TECHNICAL FIELD</b></heading>
<p id="p0001" num="0001">The present invention relates to a communication field, and particularly to a transmission power control method and system for a physical uplink shared channel.</p>
<heading id="h0002"><b>BACKGROUND</b></heading>
<p id="p0002" num="0002">In a LTE (Long Term Evolution) system, physical uplink channels mainly include a PUCCH (Physical Uplink Control Channel) and a PUSCH (Physical Uplink Shared Channel) and so on. The PUCCH is used for transmitting uplink control information, which includes uplink feedback such as ACK (Acknowledge)/NACK (Non-Acknowledge), CQI (Channel Quality Indication), RI (Rank Indication), and PMI (Precoding Matrix Indicator) and so on. PUSCH may only transmit Uplink Shared Channel (UL-SCH) data or may only transmit uplink control information, or may transmit both uplink shared channel data and uplink control information.</p>
<p id="p0003" num="0003">All User Equipments (UE) in a cell need to set transmission power of a physical uplink shared channel in every subframe. In an adjustment process of uplink closed loop power control, for a certain subframe i, the setting formula (or called as a power control formula, hereinafter referred to as formula 1) for the transmission power of its physical uplink shared channel (take dBm as a unit) is: <maths id="math0001" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0001" file="imgb0001.tif" wi="154" he="11" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i, that is the number of resource blocks used for transmitting the PUSCH in subframe i;<br/>
P<sub>O_PUSCH</sub> (j) represents target reference power. For the specific definition of variable j, please refer to relative standard documents of LTE, such as the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer);<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
<!-- EPO <DP n="2"> -->Δ<sub>TF</sub>(<i>i</i>) represents a transmission format offset parameter, wherein<br/>
When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR.K<sub2>S</sub2></sup></i>-1); when K<sub>S</sub>= 0, Δ<sub>TF</sub>(<i>i</i>)=0;<br/>
K<sub>S</sub> is a parameter configured by RRC (Radio Resource Control) at a high layer;<br/>
<i>MPR</i> = <i>TBS</i> / <i>N<sub>RE</sub></i>, where TBS represents the size of a transmission block; N<sub>RE</sub> represents the number of resource elements, <maths id="math0002" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0002" file="imgb0002.tif" wi="92" he="16" img-content="math" img-format="tif" inline="yes"/></maths> <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0003" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0003" file="imgb0003.tif" wi="20" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of SC-FDMA (Single Carrier-Frequency Division Multiple Access) symbols used for transmitting the PUSCH; <maths id="math0004" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0004" file="imgb0004.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of subcarriers (resource elements) contained in a resource block, which is used for representing the size of a resource block in a frequency domain. TBS and <i>M</i><sub>PUSCH</sub> can be obtained according to a signaling in an initial PDCCH of a transmission block;<br/>
f(i) represents the power control correction function of subframe i.</p>
<p id="p0004" num="0004">As TBS represents the size of a transmission block, when there is only uplink control information but no uplink shared channel data sent over a physical uplink shared channel, the size of a transmission block is 0, that is TBS = 0, then, <maths id="math0005" num=""><math display="block"><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msup><mn>2</mn><mrow><mi mathvariant="italic">MPR</mi><mo>⋅</mo><msub><mi>K</mi><mi>S</mi></msub></mrow></msup><mo>-</mo><mn>1</mn></mfenced><mo>=</mo><mn>10</mn><mo>×</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msup><mn>2</mn><mrow><mn>0</mn><mo>×</mo><mn>1.25</mn></mrow></msup><mo>-</mo><mn>1</mn></mfenced><mo>=</mo><mn>10</mn><mo>×</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><mn>0</mn><mo>,</mo></math><img id="ib0005" file="imgb0005.tif" wi="141" he="10" img-content="math" img-format="tif"/></maths><br/>
where Δ<sub>TF</sub>(<i>i</i>) is an infinite value, which is meaningless; this can lead to troubles in system realization. When there is only uplink control information but no uplink shared channel data sent over a physical uplink shared channel, the power control of the physical uplink shared channel can not be realized, the transmission performance of uplink control information can be affected, and thereby the overall performance of a system can be caused to decline.</p>
<heading id="h0003"><b>SUMMARY</b></heading>
<p id="p0005" num="0005">The technical problem to be solved by this invention is to overcome the shortcomings of the existing technology by providing a transmission power control method and a system for a PUSCH when there is only uplink control information but no<!-- EPO <DP n="3"> --> uplink shared channel data sent over the physical uplink shared channel, thus to ensure<!-- EPO <DP n="4"> --> the overall performance of a system.</p>
<p id="p0006" num="0006">To solve the problem as above, this invention provides a transmission power control method for a physical uplink shared channel. The method includes: when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, the transmission power of the physical uplink shared channel is set according to the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check as well as amplitude offset.</p>
<p id="p0007" num="0007">Further, the aforesaid method may also have the following characteristic, the transmission power of the physical uplink shared channel is set according to the following formula: <maths id="math0006" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0006" file="imgb0006.tif" wi="157" he="12" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the physical uplink shared channel in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power;<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
f(i) represents a power control correction function of subframe i;<br/>
Δ<sub>TF</sub>(<i>i</i>) is a transmission format offset parameter;</p>
<p id="p0008" num="0008">When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), or Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>; when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>) = 0 ; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR = O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0007" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0007" file="imgb0007.tif" wi="64" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0008" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0008" file="imgb0008.tif" wi="20" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access (SC-FDMA) symbols used for transmitting the PUSCH, <maths id="math0009" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0009" file="imgb0009.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and<!-- EPO <DP n="5"> --> Δβ represents the amplitude offset;<br/>
wherein when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O=O<sub>CQI</sub></i>, and when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), <maths id="math0010" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0010" file="imgb0010.tif" wi="41" he="11" img-content="math" img-format="tif" inline="yes"/></maths> or when <i>Δ<sub>TF</sub></i>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, <maths id="math0011" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0011" file="imgb0011.tif" wi="43" he="11" img-content="math" img-format="tif" inline="yes"/></maths>where <i>O<sub>CQI</sub></i> represents the total number of bits contained in the channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0012" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0012" file="imgb0012.tif" wi="14" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0009" num="0009">Further, the aforesaid method may have the following characteristic, the <maths id="math0013" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0013" file="imgb0013.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is notified by a high layer signaling.</p>
<p id="p0010" num="0010">Further, the aforesaid method may also have the following characteristic, the value of <maths id="math0014" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0014" file="imgb0014.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> may be 0.750, 1.000, 1.125, 1.250, 1.375, 1.625, 1.750, 2.000, 2.250, 2.500, 2.875, 3.125, 3.500, 4.000, 5.000 or 6.250.</p>
<p id="p0011" num="0011">Further, the aforesaid method may also have the following characteristic, when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ = 1, <b>or when</b> Δ<sub>TF</sub>(<i>i</i>)= 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ=0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to the signaling in the initial PDCCH of the transmission block.</p>
<p id="p0012" num="0012">Further, the aforesaid method may also have the following characteristic, when there is only uplink shared channel data sent over the physical uplink shared channel, <i>O=TBS</i>, when Δ<sub>T</sub>(<i>i</i>)<sub>F</sub> = 10.<sub>1</sub>log<sub>0</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, <b>or when</b> Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup>-</i>1)+<i>Δβ</i>, Δβ = 0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.<!-- EPO <DP n="6"> --></p>
<p id="p0013" num="0013">Further, the aforesaid method may also have the following characteristic, when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <maths id="math0015" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/><mo>;</mo></math><img id="ib0015" file="imgb0015.tif" wi="32" he="13" img-content="math" img-format="tif" inline="yes"/></maths> when <maths id="math0016" num=""><math display="inline"><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><mfenced separators=""><msup><mn>2</mn><mrow><mi mathvariant="italic">MPR</mi><mo>⋅</mo><msub><mi>K</mi><mi>S</mi></msub></mrow></msup><mo>-</mo><mn>1</mn></mfenced><mo>⋅</mo><mi mathvariant="normal">Δ</mi><mi>β</mi></mfenced></math><img id="ib0016" file="imgb0016.tif" wi="97" he="15" img-content="math" img-format="tif" inline="yes"/></maths> Δβ=1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to the signaling in the initial PDCCH of the transmission block.</p>
<p id="p0014" num="0014">Further, the aforesaid method may also have the following characteristic, when there is only uplink shared channel data sent over the physical uplink shared channel, <maths id="math0017" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0017" file="imgb0017.tif" wi="22" he="15" img-content="math" img-format="tif" inline="yes"/></maths>, when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1) + Δβ, Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0015" num="0015">Further, the aforesaid may also have the following characteristic, the uplink control information includes: Acknowledgment (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<p id="p0016" num="0016">This invention also provides a transmission power control system for a physical uplink shared channel. The system includes: a power setting module, used for setting the transmission power of the physical uplink shared channel according to the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check as well as an amplitude offset, when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel.<!-- EPO <DP n="7"> --></p>
<p id="p0017" num="0017">Further, the aforesaid system may have the following characteristic, the power setting module is used for setting the transmission power of the physical uplink shared channel according to the following formula: <maths id="math0018" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0018" file="imgb0018.tif" wi="154" he="11" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the physical uplink shared channel in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power;<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
f(i) represents a power control correction function of subframe i;<br/>
Δ<sub>TF</sub>(<i>i</i>) is a transmission format offset parameter;</p>
<p id="p0018" num="0018">When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), or Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ ; when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR</i> = <i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0019" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0019" file="imgb0019.tif" wi="62" he="12" img-content="math" img-format="tif" inline="yes"/></maths>, where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0020" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0020" file="imgb0020.tif" wi="19" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0021" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0021" file="imgb0021.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents the amplitude offset;<br/>
wherein when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i> = <i>O<sub>CQI</sub>,</i> and when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), <maths id="math0022" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0022" file="imgb0022.tif" wi="36" he="17" img-content="math" img-format="tif" inline="yes"/></maths> , or when <i>Δ<sub>TF</sub></i>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, <maths id="math0023" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0023" file="imgb0023.tif" wi="41" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0024" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0024" file="imgb0024.tif" wi="10" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, and<!-- EPO <DP n="8"> --> <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0019" num="0019">Further, the aforesaid system may have the following characteristic, the power setting module is used for obtaining the <maths id="math0025" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0025" file="imgb0025.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> from a high layer signaling.</p>
<p id="p0020" num="0020">Further, the said system may have the following characteristic, the power setting module is used for determining values of the <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel: <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, or when <i>Δ<sub>TF</sub></i>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ =0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to the signaling in the initial PDCCH of the transmission block.</p>
<p id="p0021" num="0021">Further, the aforesaid system may have the following characteristic, the power setting module is used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel: <i>O</i>=<i>TBS</i>, when Δ<sub>T</sub> (<i>i</i>)<sub>F</sub> = 10<sub>·1</sub>log<sub>0</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ, Δβ=1, <b>or when</b> Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)Δ+β, Δβ = 0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0022" num="0022">Further, the aforesaid system may have the following characteristic, the power setting module is used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel: <maths id="math0026" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/><mo>,</mo></math><img id="ib0026" file="imgb0026.tif" wi="29" he="14" img-content="math" img-format="tif" inline="yes"/></maths> when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ = 1, or when <i>Δ<sub>TF</sub></i>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coking block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to the signaling in the initial PDCCH of the transmission<!-- EPO <DP n="9"> --> block.</p>
<p id="p0023" num="0023">Further, the aforesaid system may have the following characteristic, the power setting module is used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel: <maths id="math0027" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0027" file="imgb0027.tif" wi="21" he="16" img-content="math" img-format="tif" inline="yes"/></maths>, when Δ<sub>T</sub> (<i>i</i>)<sub>F</sub> =10<sub>·1</sub>log<sub>0</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> -1) · Δ<i>β</i>), Δβ = 1, or when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ=0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K</i><sub>r</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0024" num="0024">This invention provides a transmission power control method and a system for a physical uplink shared channel to solve the problem of power control of the physical uplink shared channel when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, thus to ensure the overall performance of a system.</p>
<heading id="h0004"><b>BRIEF DESCRIPTION OF THE DRAWINGS</b></heading>
<p id="p0025" num="0025"><figref idref="f0001">Fig.1</figref> is the flow chart for calculating the transmission power of a physical uplink shared channel when there is only uplink control information but no uplink shared channel data sent over a physical uplink shared channel in the embodiments of this invention.</p>
<heading id="h0005"><b>DETAILED DESCRIPTION</b></heading>
<p id="p0026" num="0026">The basic thought of this invention is that, when there is only uplink control information but no uplink shared channel data sent over a physical uplink shared channel, a transmission format offset parameter is set according to the total number of bits contained in a channel quality indication signaling and its corresponding Cyclic Redundancy Check (CRC) as well as an amplitude offset, and then the transmission power of a physical uplink shared channel is set according to the transmission format offset parameter.</p>
<p id="p0027" num="0027">As shown in <figref idref="f0001">Fig. 1</figref>, a transmission power control method for a physical uplink shared channel in this invention includes the following steps:<!-- EPO <DP n="10"> -->
<ul id="ul0001" list-style="none" compact="compact">
<li>step 101 : Obtaining types of data currently transmitted over the physical uplink shared channel;</li>
<li>step 102: Setting a transmission format offset parameter when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel;</li>
<li>step 103: Calculating the transmission power of the physical uplink shared channel, and setting the transmission power of the physical uplink shared channel according to the result of the calculation.</li>
</ul></p>
<p id="p0028" num="0028">In step 102, the transmission format offset parameter is set according to the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check as well as an amplitude offset; in step 103, the transmission power of the physical uplink shared channel is set according to the transmission format offset parameter.</p>
<heading id="h0006">Embodiment 1</heading>
<p id="p0029" num="0029">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0028" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0028" file="imgb0028.tif" wi="154" he="10" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0030" num="0030">When K<sub>S</sub>=1.25, Δ<sub>T</sub> (<i>i</i>)<sub>F</sub> = 10<sub>·1</sub>log<sub>0</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ) ; when K<sub>S</sub>=0, Δ<sub>TF</sub>(<i>i</i>) =0; K<sub>S</sub> is parameter configured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0029" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0029" file="imgb0029.tif" wi="62" he="14" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for<!-- EPO <DP n="11"> --> transmitting the physical uplink shared channel, <maths id="math0030" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0030" file="imgb0030.tif" wi="17" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0031" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0031" file="imgb0031.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0031" num="0031">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i> = <i>O<sub>CQI</sub></i> and <maths id="math0032" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0032" file="imgb0032.tif" wi="24" he="10" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0033" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0033" file="imgb0033.tif" wi="14" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0032" num="0032">In other cases (when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel), <i>O</i>=<i>TBS</i> and Δβ=1, where <i>TBS</i> represents the size of a transmission block, <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in an initial PDCCH of the transmission block.</p>
<p id="p0033" num="0033"><maths id="math0034" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0034" file="imgb0034.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0035" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0035" file="imgb0035.tif" wi="14" he="9" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0036" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0036" file="imgb0036.tif" wi="11" he="11" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0037" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0037" file="imgb0037.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high level index <maths id="math0038" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0038" file="imgb0038.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0039" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0039" file="imgb0039.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.</p>
<p id="p0034" num="0034">Table 1: Correspondence between the high layer index <maths id="math0040" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0040" file="imgb0040.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0041" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0041" file="imgb0041.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths>
<tables id="tabl0001" num="0001">
<table frame="all">
<tgroup cols="8">
<colspec colnum="1" colname="col1" colwidth="17mm" colsep="0"/>
<colspec colnum="2" colname="col2" colwidth="17mm" colsep="0"/>
<colspec colnum="3" colname="col3" colwidth="17mm" colsep="0"/>
<colspec colnum="4" colname="col4" colwidth="17mm" colsep="0"/>
<colspec colnum="5" colname="col5" colwidth="17mm"/>
<colspec colnum="6" colname="col6" colwidth="19mm" colsep="0"/>
<colspec colnum="7" colname="col7" colwidth="19mm" colsep="0"/>
<colspec colnum="8" colname="col8" colwidth="19mm"/>
<thead valign="middle">
<row>
<entry namest="col1" nameend="col5" align="center"><maths id="math0042" num=""><img id="ib0042" file="imgb0042.tif" wi="53" he="12" img-content="math" img-format="tif"/></maths></entry>
<entry namest="col6" nameend="col8" align="center"><maths id="math0043" num=""><img id="ib0043" file="imgb0043.tif" wi="39" he="12" img-content="math" img-format="tif"/></maths></entry></row></thead>
<tbody valign="middle">
<row>
<entry/>
<entry namest="col2" nameend="col3" align="left">0</entry>
<entry>0</entry>
<entry>.</entry>
<entry>7</entry>
<entry>5</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry namest="col2" nameend="col3" align="left">1</entry>
<entry>1</entry>
<entry>.</entry>
<entry>0</entry>
<entry>0</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry namest="col2" nameend="col3" align="left">2</entry>
<entry>1</entry>
<entry>.</entry>
<entry>1</entry>
<entry>2</entry>
<entry>5</entry></row>
<row>
<entry/>
<entry namest="col2" nameend="col3" align="left">3</entry>
<entry>1</entry>
<entry>.</entry>
<entry>2</entry>
<entry>5</entry>
<entry>0</entry></row><!-- EPO <DP n="12"> -->
<row>
<entry/>
<entry>4</entry>
<entry/>
<entry>1</entry>
<entry>.</entry>
<entry>3</entry>
<entry>7</entry>
<entry>5</entry></row>
<row>
<entry/>
<entry>5</entry>
<entry/>
<entry>1</entry>
<entry>.</entry>
<entry>6</entry>
<entry>2</entry>
<entry>5</entry></row>
<row>
<entry/>
<entry>6</entry>
<entry/>
<entry>1</entry>
<entry>.</entry>
<entry>7</entry>
<entry>5</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>7</entry>
<entry/>
<entry>2</entry>
<entry>.</entry>
<entry>0</entry>
<entry>0</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>8</entry>
<entry/>
<entry>2</entry>
<entry>.</entry>
<entry>2</entry>
<entry>5</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>9</entry>
<entry/>
<entry>2</entry>
<entry>.</entry>
<entry>5</entry>
<entry>0</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>1</entry>
<entry>0</entry>
<entry align="right">2</entry>
<entry align="right">.</entry>
<entry>8</entry>
<entry>7</entry>
<entry>5</entry></row>
<row>
<entry/>
<entry>1</entry>
<entry>1</entry>
<entry align="right">3</entry>
<entry align="right">.</entry>
<entry>1</entry>
<entry>2</entry>
<entry>5</entry></row>
<row>
<entry/>
<entry>1</entry>
<entry>2</entry>
<entry align="right">3</entry>
<entry align="right">.</entry>
<entry>5</entry>
<entry>0</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>1</entry>
<entry>3</entry>
<entry align="right">4</entry>
<entry align="right">.</entry>
<entry>0</entry>
<entry>0</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>1</entry>
<entry>4</entry>
<entry align="right">5</entry>
<entry align="right">.</entry>
<entry>0</entry>
<entry>0</entry>
<entry>0</entry></row>
<row>
<entry/>
<entry>1</entry>
<entry>5</entry>
<entry align="right">6</entry>
<entry align="right">.</entry>
<entry>2</entry>
<entry>5</entry>
<entry>0</entry></row></tbody></tgroup>
</table>
</tables>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0035" num="0035">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0007">Embodiment 2</heading>
<p id="p0036" num="0036">The formula for calculating the transmission power of a physical uplink shared channel is shown as follows: <maths id="math0044" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mn>.</mn></math><img id="ib0044" file="imgb0044.tif" wi="154" he="10" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of the transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0037" num="0037">When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ); when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>) = 0 ; K<sub>S</sub> is a parameter configured by radio resource control at a high layer;<!-- EPO <DP n="13"> --> <i>MPR=O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0045" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0045" file="imgb0045.tif" wi="62" he="15" img-content="math" img-format="tif" inline="yes"/></maths><sub>,</sub> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0046" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0046" file="imgb0046.tif" wi="18" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0047" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0047" file="imgb0047.tif" wi="14" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0038" num="0038">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i> = <i>O<sub>CQI</sub></i> and <maths id="math0048" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0048" file="imgb0048.tif" wi="27" he="10" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0049" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0049" file="imgb0049.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0039" num="0039">When there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i> and Δβ=1, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in an initial PDCCH of the transmission block.</p>
<p id="p0040" num="0040">When there is only uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i> and Δβ=1, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0041" num="0041"><maths id="math0050" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0050" file="imgb0050.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0051" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0051" file="imgb0051.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0052" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0052" file="imgb0052.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0053" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0053" file="imgb0053.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0054" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0054" file="imgb0054.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0055" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0055" file="imgb0055.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.<!-- EPO <DP n="14"> --></p>
<p id="p0042" num="0042">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0008">Embodiment 3</heading>
<p id="p0043" num="0043">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0056" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0056" file="imgb0056.tif" wi="154" he="9" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O</sub>_<sub>PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0044" num="0044">When K<sub>S</sub>=1.25, Δ<sub>T</sub>(<i>i</i>)<sub>F</sub> = 10<sub>·1</sub>log<sub>0</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)<i>·Δβ</i>); when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>)=0; K<sub>S</sub> is a parameter cnfigured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0057" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0057" file="imgb0057.tif" wi="63" he="13" img-content="math" img-format="tif" inline="yes"/></maths>, where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0058" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0058" file="imgb0058.tif" wi="19" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0059" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0059" file="imgb0059.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0045" num="0045">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i> = <i>O<sub>CQI</sub></i> and <maths id="math0060" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0060" file="imgb0060.tif" wi="28" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0061" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0061" file="imgb0061.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of<!-- EPO <DP n="15"> --> channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0046" num="0046">In other cases (when there are both uplink control information and uplink shared channel data sent over the physical uplink shard channel, or when there is only uplink shared channel data sent over the physical uplink shared channel), <maths id="math0062" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0062" file="imgb0062.tif" wi="21" he="14" img-content="math" img-format="tif" inline="yes"/></maths> and Δβ=1, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0047" num="0047"><maths id="math0063" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0063" file="imgb0063.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0064" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0064" file="imgb0064.tif" wi="14" he="10" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0065" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0065" file="imgb0065.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0066" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0066" file="imgb0066.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0067" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0067" file="imgb0067.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0068" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0068" file="imgb0068.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0048" num="0048">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0009">Embodiment 4</heading>
<p id="p0049" num="0049">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0069" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0069" file="imgb0069.tif" wi="154" he="9" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
<!-- EPO <DP n="16"> -->Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0050" num="0050">When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub> ((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ); when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR=O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0070" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0070" file="imgb0070.tif" wi="63" he="14" img-content="math" img-format="tif" inline="yes"/></maths>, where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0071" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0071" file="imgb0071.tif" wi="19" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0072" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0072" file="imgb0072.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0051" num="0051">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub></i> and <maths id="math0073" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0073" file="imgb0073.tif" wi="28" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0074" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0074" file="imgb0074.tif" wi="12" he="8" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0052" num="0052">When there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <maths id="math0075" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0075" file="imgb0075.tif" wi="22" he="15" img-content="math" img-format="tif" inline="yes"/></maths> and Δβ = 1, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0053" num="0053">When there is only uplink shared channel data sent over the physical uplink shared channel, <maths id="math0076" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0076" file="imgb0076.tif" wi="23" he="15" img-content="math" img-format="tif" inline="yes"/></maths> and Δβ=1, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in a most recent PDCCH related to the transmission block.<!-- EPO <DP n="17"> --></p>
<p id="p0054" num="0054"><maths id="math0077" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0077" file="imgb0077.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0078" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0078" file="imgb0078.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0079" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0079" file="imgb0079.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0080" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0080" file="imgb0080.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0081" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0081" file="imgb0081.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0082" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0082" file="imgb0082.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0055" num="0055">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0010">Embodiment 5</heading>
<p id="p0056" num="0056">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0083" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0083" file="imgb0083.tif" wi="154" he="12" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O</sub>_<sub>PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0057" num="0057">When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ; when K<sub>S</sub>=0, Δ<sub>TF</sub>(<i>i</i>)=0; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0084" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0084" file="imgb0084.tif" wi="63" he="13" img-content="math" img-format="tif" inline="yes"/></maths>, where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0085" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0085" file="imgb0085.tif" wi="19" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0086" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0086" file="imgb0086.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource<!-- EPO <DP n="18"> --> block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0058" num="0058">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i> = <i>O<sub>CQI</sub></i> and <maths id="math0087" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0087" file="imgb0087.tif" wi="43" he="12" img-content="math" img-format="tif" inline="yes"/></maths>, where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0088" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0088" file="imgb0088.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0059" num="0059">In other cases (when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel), <i>O=TBS</i> and Δβ = 0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in an initial PDCCH of the transmission block.</p>
<p id="p0060" num="0060"><maths id="math0089" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0089" file="imgb0089.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0090" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0090" file="imgb0090.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0091" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0091" file="imgb0091.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0092" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0092" file="imgb0092.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0093" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0093" file="imgb0093.tif" wi="10" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0094" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0094" file="imgb0094.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0061" num="0061">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0011">Embodiment 6</heading>
<p id="p0062" num="0062">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0095" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0095" file="imgb0095.tif" wi="154" he="10" img-content="math" img-format="tif"/></maths><br/>
<!-- EPO <DP n="19"> -->where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0063" num="0063">When K<sub>S</sub>=1.25, Δ<sub>T</sub> (<i>i</i>)<sub>F</sub> = 10<sub>1</sub><i>·</i>log<sub>0</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ; when K<sub>S</sub>=0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR = O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0096" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0096" file="imgb0096.tif" wi="63" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where M<sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0097" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0097" file="imgb0097.tif" wi="18" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0098" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0098" file="imgb0098.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0064" num="0064">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub></i> and <maths id="math0099" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0099" file="imgb0099.tif" wi="49" he="12" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0100" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0100" file="imgb0100.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0065" num="0065">When there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i> and Δβ=0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in an initial PDCCH of the transmission block.<!-- EPO <DP n="20"> --></p>
<p id="p0066" num="0066">When there is only uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i> and Δβ=0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block;</p>
<p id="p0067" num="0067"><maths id="math0101" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0101" file="imgb0101.tif" wi="14" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0102" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0102" file="imgb0102.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0103" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0103" file="imgb0103.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0104" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0104" file="imgb0104.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0105" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0105" file="imgb0105.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0106" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0106" file="imgb0106.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0068" num="0068">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0012">Embodiment 7</heading>
<p id="p0069" num="0069">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0107" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0107" file="imgb0107.tif" wi="154" he="9" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.<!-- EPO <DP n="21"> --></p>
<p id="p0070" num="0070">When K<sub>S</sub>=1.25, Δ<sub>T</sub> (<i>i</i>)<sub>F</sub> = 10<sub>1</sub>·log<sub>0</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ; when K<sub>S</sub>= 0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> is a prameter configured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0108" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0108" file="imgb0108.tif" wi="56" he="10" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, N<sup>PUSCH</sup><sub>symb</sub> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0109" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0109" file="imgb0109.tif" wi="10" he="8" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0071" num="0071">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub></i> and<maths id="math0110" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0110" file="imgb0110.tif" wi="43" he="8" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check,<maths id="math0111" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0111" file="imgb0111.tif" wi="10" he="7" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0072" num="0072">In other cases (when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, or when there is only uplink shared channel data sent over the physical uplink shared channel),<maths id="math0112" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>−</mo><mn>1</mn></mrow></munderover><msub><mi>K</mi><mi>r</mi></msub></mstyle></math><img id="ib0112" file="imgb0112.tif" wi="14" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and Δβ=0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in an initial PDCCH of a transmission block.<!-- EPO <DP n="22"> --></p>
<p id="p0073" num="0073"><maths id="math0113" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0113" file="imgb0113.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0114" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0114" file="imgb0114.tif" wi="10" he="8" img-content="math" img-format="tif" inline="yes"/></maths><i>.</i> The correspondence between the high layer index <maths id="math0115" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0115" file="imgb0115.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0116" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0116" file="imgb0116.tif" wi="13" he="11" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0117" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0117" file="imgb0117.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0118" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0118" file="imgb0118.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0074" num="0074">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<heading id="h0013">Embodiment 8</heading>
<p id="p0075" num="0075">The formula for calculating the transmission power of a physical uplink shared channel is as follows: <maths id="math0119" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0119" file="imgb0119.tif" wi="154" he="12" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the PUSCH in the subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power (For specific definition, please refer to the definition in section 5.1.1.1 of TS 36.213 (LTE physical layer));<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
Δ<sub>TF</sub>(<i>i</i>) is called as a transmission format offset parameter.</p>
<p id="p0076" num="0076">When K<sub>S</sub>=1.25, Δ<sub>T</sub> (<i>i</i>)<sub>F</sub> = 10<sub>1</sub>·log<sub>0</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ; when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>) = 0 ; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0120" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0120" file="imgb0120.tif" wi="64" he="13" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0121" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0121" file="imgb0121.tif" wi="18" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH; <maths id="math0122" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0122" file="imgb0122.tif" wi="13" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents an amplitude offset.</p>
<p id="p0077" num="0077">When there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub></i> and <maths id="math0123" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0123" file="imgb0123.tif" wi="44" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0124" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0124" file="imgb0124.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, which is notified by a high layer signaling, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of<!-- EPO <DP n="23"> --> a transmission block.</p>
<p id="p0078" num="0078">Where there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <maths id="math0125" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0125" file="imgb0125.tif" wi="22" he="13" img-content="math" img-format="tif" inline="yes"/></maths> and Δβ=0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K</i><sub>r</sub> are obtained according to a signaling in an initial PDCCH of a transmission block.</p>
<p id="p0079" num="0079">When there is only uplink shared channel data sent over the physical uplink shared channel, <maths id="math0126" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mspace width="1em"/></math><img id="ib0126" file="imgb0126.tif" wi="22" he="15" img-content="math" img-format="tif" inline="yes"/></maths> and Δβ=0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0080" num="0080"><maths id="math0127" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0127" file="imgb0127.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the amplitude offset of channel quality indication information, which is notified by a high layer index <maths id="math0128" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mn>.</mn></math><img id="ib0128" file="imgb0128.tif" wi="14" he="9" img-content="math" img-format="tif" inline="yes"/></maths> The correspondence between the high layer index <maths id="math0129" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0129" file="imgb0129.tif" wi="11" he="10" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0130" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0130" file="imgb0130.tif" wi="13" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is shown in Table 1. However, in this invention, the correspondence between the high layer index <maths id="math0131" num=""><math display="inline"><msubsup><mi>I</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0131" file="imgb0131.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> and <maths id="math0132" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0132" file="imgb0132.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> is not limited to that as shown in Table 1, and may be in other ways.<br/>
f(i) represents a power control correction function of subframe i.</p>
<p id="p0081" num="0081">Moreover, the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</p>
<p id="p0082" num="0082">This invention also provides a transmission power control system for a physical uplink shared channel. The system includes: a power setting module, used for setting the transmission power of the physical uplink shared channel according to the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check as well as an amplitude offset, when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel.</p>
<p id="p0083" num="0083">Wherein the power setting module is used for setting the transmission power of the<!-- EPO <DP n="24"> --> physical uplink shared channel according to the following formula: <maths id="math0133" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0133" file="imgb0133.tif" wi="154" he="11" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the physical uplink shared channel in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power;<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
f(i) represents a power control correction function of subframe i;<br/>
Δ<sub>TF</sub>(<i>i</i>) is a transmission format offset parameter;<br/>
when K<sub>S</sub>=1.25, Δ<sub>IF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), or Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ ;<br/>
when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>)=0 ; K<sub>s</sub> is a parameter configured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0134" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0134" file="imgb0134.tif" wi="64" he="13" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0135" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0135" file="imgb0135.tif" wi="19" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0136" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0136" file="imgb0136.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents the amplitude offset;<br/>
<!-- EPO <DP n="25"> -->wherein when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub></i>, and when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ),<maths id="math0137" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0137" file="imgb0137.tif" wi="12" he="5" img-content="math" img-format="tif" inline="yes"/></maths> <b>or when</b> Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, <maths id="math0138" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0138" file="imgb0138.tif" wi="43" he="12" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in the channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0139" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0139" file="imgb0139.tif" wi="12" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.<br/>
The power setting module obtains the<maths id="math0140" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0140" file="imgb0140.tif" wi="9" he="7" img-content="math" img-format="tif" inline="yes"/></maths> from a high layer signaling.</p>
<p id="p0084" num="0084">The power setting module is also used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel: <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ = 1, or when <i>Δ<sub>TF</sub></i>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ =0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to the signaling in the initial PDCCH of the transmission block.</p>
<p id="p0085" num="0085">The power setting module is also used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel: <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, or when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub> (2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1) + Δβ, Δβ =0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0086" num="0086">The power setting module is also used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel: <maths id="math0141" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0141" file="imgb0141.tif" wi="24" he="14" img-content="math" img-format="tif" inline="yes"/></maths> when Δ<sub>TF</sub>(<i>i</i>) =10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ =1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to the signaling in the initial PDCCH of the transmission block.<!-- EPO <DP n="26"> --></p>
<p id="p0087" num="0087">The power setting module is also used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel: <maths id="math0142" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0142" file="imgb0142.tif" wi="21" he="15" img-content="math" img-format="tif" inline="yes"/></maths> when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, or when<!-- EPO <DP n="27"> --> Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ=0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</p>
<p id="p0088" num="0088">The foregoing descriptions are only preferred embodiments of this invention, and are not intended to limit this invention. For those skilled in the art, this invention may have various changes and modifications. All modifications, identical replacements and improvements made without departing from the principle of this invention shall be within the protection scope of this invention.</p>
<heading id="h0014"><b><u>Industrial Applicability</u></b></heading>
<p id="p0089" num="0089">This invention provides a transmission power control method and a system for a physical uplink shared channel, which are used for setting the transmission power of the physical uplink shared channel according to the total number of bits contained in a channel indication signaling and its corresponding cyclic redundancy check as well as an amplitude offset when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, thus to ensure the overall performance of a system.</p>
</description>
<claims id="claims01" lang="en"><!-- EPO <DP n="28"> -->
<claim id="c-en-01-0001" num="0001">
<claim-text>A transmission power control method for a physical uplink shared channel, including: when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, setting the transmission power of the physical uplink shared channel according to the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check as well as an amplitude offset.</claim-text></claim>
<claim id="c-en-01-0002" num="0002">
<claim-text>The method according to claim 1, wherein the transmission power of the physical uplink shared channel is set according to the following formula: <maths id="math0143" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0143" file="imgb0143.tif" wi="154" he="9" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the physical uplink shared channel in subframe i;<br/>
P<sub>O</sub>_<sub>PUSCH</sub>(j) represents target reference power;<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
f(i) represents a power control correction function of subframe i;<br/>
Δ<sub>TF</sub>(<i>i</i>) is a transmission format offset parameter;<br/>
When K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1))·Δβ or Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ ;<br/>
when K<sub>S</sub> = 0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR</i> = <i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0144" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0144" file="imgb0144.tif" wi="64" he="11" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0145" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0145" file="imgb0145.tif" wi="21" he="11" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access symbols used for transmitting the PUSCH, <maths id="math0146" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0146" file="imgb0146.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents the amplitude offset;<br/>
wherein when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub></i>, and when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), <maths id="math0147" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0147" file="imgb0147.tif" wi="27" he="10" img-content="math" img-format="tif" inline="yes"/></maths> or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, <maths id="math0148" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0148" file="imgb0148.tif" wi="40" he="10" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in the channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0149" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0149" file="imgb0149.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.<!-- EPO <DP n="29"> --></claim-text></claim>
<claim id="c-en-01-0003" num="0003">
<claim-text>The method according to claim 2, wherein the<maths id="math0150" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0150" file="imgb0150.tif" wi="10" he="8" img-content="math" img-format="tif" inline="yes"/></maths> is notified by a high layer signaling.</claim-text></claim>
<claim id="c-en-01-0004" num="0004">
<claim-text>The method according to claim 2 or 3, wherein the value of the N<maths id="math0151" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0151" file="imgb0151.tif" wi="9" he="7" img-content="math" img-format="tif" inline="yes"/></maths> is 0.750, 1.000, 1.125, 1.250, 1.375, 1.625, 1.750, 2.000, 2.250, 2.500, 2.875, 3.125, 3.500, 4.000, 5.000 or 6.250.</claim-text></claim>
<claim id="c-en-01-0005" num="0005">
<claim-text>The method according to claim 2, wherein when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub> ((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ, Δβ = 1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ=0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to the signaling in the initial PDCCH of the transmission block.</claim-text></claim>
<claim id="c-en-01-0006" num="0006">
<claim-text>The method according to claim 2, wherein when there is only uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ =1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ, Δβ = 0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</claim-text></claim>
<claim id="c-en-01-0007" num="0007">
<claim-text>The method according to claim 2, wherein when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel, <maths id="math0152" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>;</mo></math><img id="ib0152" file="imgb0152.tif" wi="28" he="13" img-content="math" img-format="tif" inline="yes"/></maths> when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup>-</i>1)·Δβ), Δβ = 1, or when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C and K<sub>r</sub></i> are obtained according to the signaling in the initial PDCCH of the transmission block.</claim-text></claim>
<claim id="c-en-01-0008" num="0008">
<claim-text>The method according to claim 2, wherein when there is only uplink shared channel data sent over the physical uplink shared channel, <maths id="math0153" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0153" file="imgb0153.tif" wi="32" he="14" img-content="math" img-format="tif" inline="yes"/></maths> when<br/>
Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1).Δβ), Δβ=1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ), Δβ=0, where C represents the total<!-- EPO <DP n="30"> --> number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and the <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</claim-text></claim>
<claim id="c-en-01-0009" num="0009">
<claim-text>The method according to claim 1 or 2, wherein the uplink control information includes: Acknowledge (ACK), and/or Non-Acknowledge (NACK), and/or Rank Indication (RI), Channel Quality Indication (CQI), and/or Precoding Matrix Indicator (PMI).</claim-text></claim>
<claim id="c-en-01-0010" num="0010">
<claim-text>A transmission power control system for a physical uplink shared channel, including a power setting module, used for setting the transmission power of the physical uplink shared channel according to the total number of bits contained in a channel quality indication signaling and its corresponding cyclic redundancy check as well as an amplitude offset, when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel.</claim-text></claim>
<claim id="c-en-01-0011" num="0011">
<claim-text>The system according to claim 10, wherein the power setting module is used for setting the transmission power of the physical uplink shared channel according to the following formula: <maths id="math0154" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0154" file="imgb0154.tif" wi="154" he="9" img-content="math" img-format="tif"/></maths><br/>
where P<sub>MAX</sub> represents an upper limit of transmission power;<br/>
M<sub>PUSCH</sub>(i) represents bandwidth used for transmitting the physical uplink shared channel in subframe i;<br/>
P<sub>O_PUSCH</sub>(j) represents target reference power;<br/>
α represents a path loss correction factor;<br/>
PL represents path loss;<br/>
f(i) represents a power control correction function of subframe i;<br/>
Δ<sub>TF</sub>(<i>i</i>) is a transmission format offset parameter;<br/>
when K<sub>S</sub>=1.25, Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), or Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ); when K<sub>S</sub>=0, Δ<sub>TF</sub>(<i>i</i>) = 0 ; K<sub>S</sub> is a parameter configured by radio resource control at a high layer; <i>MPR</i>=<i>O</i>/<i>N<sub>RE</sub></i>, where N<sub>RE</sub> represents the number of resource elements, <maths id="math0155" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0155" file="imgb0155.tif" wi="67" he="10" img-content="math" img-format="tif" inline="yes"/></maths> where <i>M</i><sub>PUSCH</sub> represents the bandwidth used for transmitting the physical uplink shared channel, <maths id="math0156" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0156" file="imgb0156.tif" wi="19" he="10" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of single carrier-frequency division multiple access signals used for transmitting the PUSCH, <maths id="math0157" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0157" file="imgb0157.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> represents the number of resource elements contained in a resource block, <i>O</i> represents the size of information bits, and Δβ represents the amplitude offset;<br/>
<!-- EPO <DP n="31"> -->wherein when there is only uplink control information but no uplink shared channel data sent over the physical uplink shared channel, <i>O</i>=<i>O<sub>CQI</sub>,</i> and when<br/>
Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ),<maths id="math0158" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0158" file="imgb0158.tif" wi="16" he="7" img-content="math" img-format="tif" inline="yes"/></maths> or when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<sup>MPR·K<sub2>S</sub2></sup>-1)+Δβ), <maths id="math0159" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0159" file="imgb0159.tif" wi="43" he="10" img-content="math" img-format="tif" inline="yes"/></maths> where <i>O<sub>CQI</sub></i> represents the total number of bits contained in the channel quality indication signaling and its corresponding cyclic redundancy check, <maths id="math0160" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0160" file="imgb0160.tif" wi="13" he="8" img-content="math" img-format="tif" inline="yes"/></maths> represents an amplitude offset of channel quality indication information, and <i>M</i><sub>PUSCH</sub> is obtained according to a signaling in an initial PDCCH of a transmission block.</claim-text></claim>
<claim id="c-en-01-0012" num="0012">
<claim-text>The system according to claim 11, wherein the power setting module is use for obtaining the <maths id="math0161" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0161" file="imgb0161.tif" wi="12" he="8" img-content="math" img-format="tif" inline="yes"/></maths> from a high layer signaling.</claim-text></claim>
<claim id="c-en-01-0013" num="0013">
<claim-text>The system according to claim 11, wherein the power setting module is used for determining values of the <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel: <i>O</i>=<i>TBS</i>, when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, or when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ = 0, where <i>TBS</i> represents the size of a transmission block, and <i>TBS</i> and <i>M</i><sub>PUSCH</sub> are obtained according to the signaling in the initial PDCCH of the transmission block.</claim-text></claim>
<claim id="c-en-01-0014" num="0014">
<claim-text>The system according to claim 11, wherein the power setting module is used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel: <i>O</i>=<i>TBS,</i> when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ =1, or when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ), Δβ=0, where <i>TBS</i> represents the size of a transmission block, and TBS and <i>M</i><sub>PUSCH</sub> are obtained according to a signaling in a most recent PDCCH related to the transmission block.</claim-text></claim>
<claim id="c-en-01-0015" num="0015">
<claim-text>The system according to claim 11, wherein the power setting module is used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel, or when there are both uplink control information and uplink shared channel data sent over the physical uplink shared channel: <maths id="math0162" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0162" file="imgb0162.tif" wi="24" he="13" img-content="math" img-format="tif" inline="yes"/></maths> when Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ), Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K<sub>r</sub></i> are obtained according to the signaling in the initial<!-- EPO <DP n="32"> --> PDCCH of the transmission block.</claim-text></claim>
<claim id="c-en-01-0016" num="0016">
<claim-text>The system according to claim 11, wherein the power setting module is used for determining values of <i>O</i> and Δβ in the following way when there is only uplink shared channel data sent over the physical uplink shared channel: <maths id="math0163" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0163" file="imgb0163.tif" wi="23" he="13" img-content="math" img-format="tif" inline="yes"/></maths> when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ =1, or when Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δβ, Δβ = 0, where C represents the total number of coding blocks, <i>K<sub>r</sub></i> represents the number of bits contained in a coding block with an index of r, and <i>M</i><sub>PUSCH</sub>, <i>C</i> and <i>K</i>, are obtained according to a signaling in a most recent PDCCH related to the transmission block.</claim-text></claim>
</claims>
<claims id="claims02" lang="de"><!-- EPO <DP n="33"> -->
<claim id="c-de-01-0001" num="0001">
<claim-text>Ein Übertragungsleistungssteuerungsverfahren für einen physikalischen Aufwärtsverbindungsgeteiltenkanal, beinhaltend:
<claim-text>wenn nur Aufwärtsverbindungssteuerungsinformationen aber keine Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, Setzen der Übertragungsleistung von dem physikalischen Aufwärtsverbindungsgeteiltenkanal gemäß der gesamten Anzahl von Bits, die in einer Kanalqualitätsanzeigesignalisierung beinhaltet sind und ihrer zugehöriger zyklischen Redundanzprüfung, genauso wie einen Amplitudenoffset.</claim-text></claim-text></claim>
<claim id="c-de-01-0002" num="0002">
<claim-text>Das Verfahren gemäß Anspruch 1, wobei die Übertragungsleistung von dem physikalischen Aufwärtsverbindungsgeteiltenkanal gemäß der folgenden Formel gesetzt wird: <maths id="math0164" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>max</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0164" file="imgb0164.tif" wi="108" he="15" img-content="math" img-format="tif"/></maths><br/>
wobei P<sub>MAX</sub> ein oberes Limit der Übertragungsleistung darstellt; M<sub>PUSCH</sub>(i) stellt die Bandbereite dar, die verwendet wird zum Übertragen des physikalischen Aufwärtsverbindungsgeteiltenkanal in Unterrahmen i;<br/>
P<sub>O_PUSCH</sub>(j) stellt die Zielreferenzleistung dar;<br/>
α stellt einen Pfadverlustkorrekturfaktor dar;<br/>
PL stellt den Pfadverlust dar;<br/>
f(i) stellt eine Leistungssteuerkorrekturfunktion von Unterrahmen i dar;<br/>
Δ<sub>TF</sub>(<i>i</i>) ist ein Übertragungsformatoffsetparameter;<br/>
wenn Ks= 1.25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1)·Δβ) oder Δ<sub>TF</sub>(<i>i</i>) =10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup> -</i> 1) + Δβ;<br/>
<!-- EPO <DP n="34"> -->wenn Ks= 0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> ist ein Parameter, der durch die Funkressourcensteuerung auf einer höheren Ebene konfiguriert ist; <i>MPR</i> = <i>O</i>/<i>N<sub>RE</sub></i>, wobei N<sub>RE</sub> die Anzahl von Ressourcenelementen darstellt, <maths id="math0165" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0165" file="imgb0165.tif" wi="48" he="10" img-content="math" img-format="tif" inline="yes"/></maths><br/>
wobei M<sub>PUSCH</sub> die Bandbreite darstellt, die zum Übertragen des physikalischen Aufwärtsverbindungsgeteiltenkanals genutzt wird, <maths id="math0166" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0166" file="imgb0166.tif" wi="12" he="7" img-content="math" img-format="tif" inline="yes"/></maths> stellt die Anzahl von Einzelträgerfrequenzgeteiltenmehrfachzugriffssymbolen dar, die zum Übertragen des PUSCH genutzt werden, <maths id="math0167" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0167" file="imgb0167.tif" wi="10" he="8" img-content="math" img-format="tif" inline="yes"/></maths> stellt die Anzahl von Ressourcenelementen dar, die in einem Ressourcenblock beinhaltet sind; <i>O</i> stellt die Größe von Informationsbits dar, und Δβ stellt den Amplitudenoffset dar; wobei wenn nur Aufwärtsverbindungssteuerungsinformationen, aber keine Aufwärtsverbindungsgeteiltekanaldaten über den Aufwärtsverbindungsgeteiltenkanal gesendet werden, <i>O</i> = <i>O<sub>CQI</sub></i>, und wenn Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), <maths id="math0168" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0168" file="imgb0168.tif" wi="28" he="11" img-content="math" img-format="tif" inline="yes"/></maths><br/>
<!-- EPO <DP n="35"> -->oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δβ, <maths id="math0169" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo></math><img id="ib0169" file="imgb0169.tif" wi="21" he="6" img-content="math" img-format="tif" inline="yes"/></maths><maths id="math0170" num=""><math display="inline"><msub><mi>log</mi><mn>10</mn></msub><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0170" file="imgb0170.tif" wi="26" he="8" img-content="math" img-format="tif" inline="yes"/></maths>, wobei <i>O<sub>CQI</sub></i> stellt die gesamte Anzahl von Bits dar, die in der Kanalqualitätsanzeigesignalisierung und ihrer zugehörigen zyklischen Redundanzprüfung beinhaltet sind, <maths id="math0171" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0171" file="imgb0171.tif" wi="17" he="9" img-content="math" img-format="tif" inline="yes"/></maths> stellt einen Amplitudenoffset von Kanalqualitätsanzeigeinformationen dar, und M<sub>PUSCH</sub> wird erhalten gemäß einer Signalisierung in einem anfänglichen PDCCH von einem Übertragungsblock.</claim-text></claim>
<claim id="c-de-01-0003" num="0003">
<claim-text>Das Verfahren gemäß Anspruch 2, wobei der <maths id="math0172" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0172" file="imgb0172.tif" wi="14" he="9" img-content="math" img-format="tif" inline="yes"/></maths> unterrichtet wird durch eine höhere Ebenensignalisierung;</claim-text></claim>
<claim id="c-de-01-0004" num="0004">
<claim-text>Das Verfahren gemäß Anspruch 2 oder 3, wobei der Wert von dem <maths id="math0173" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0173" file="imgb0173.tif" wi="14" he="9" img-content="math" img-format="tif" inline="yes"/></maths> 0.750, 1.000, 1.125, 1.250, 1.375, 1.625, 1.750, 2.000, 2.250, 2.500, 2.875, 3.125, 3.500, 4.000, 5.000 oder 6.250 ist.</claim-text></claim>
<claim id="c-de-01-0005" num="0005">
<claim-text>Das Verfahren gemäß Anspruch 2, wobei wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, oder wenn Beide Aufwärtsverbindungssteuerungsinformationen und Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, <i>0</i> = <i>TBS,</i> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δ<i>β</i>), Δ<i>β</i> = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δ<i>β</i>; Δ<i>β</i> = 0, wobei <i>TBS</i> die Größe von einem Übertragungsblock darstellt, und <i>TBS</i> und <i>M</i><sub>PUSCH</sub> werden gemäß der Signalisierung in dem anfänglichen PDCCH von dem Übertragungsblock erhalten.</claim-text></claim>
<claim id="c-de-01-0006" num="0006">
<claim-text>Das Verfahren gemäß Anspruch 2, wobei wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, <i>0</i> = <i>TBS</i>, wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δ<i>β</i>), Δ<i>β</i> = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δ<i>β</i>; Δ<i>β</i> = 0, wobei <i>TBS</i> die Größe von einem Übertragungsblock darstellt, und <i>TBS</i> und <i>M</i><sub>PUSCH</sub> werden gemäß der Signalisierung in einem jüngsten PDCCH bezüglich des Übertragungsblocks erhalten.</claim-text></claim>
<claim id="c-de-01-0007" num="0007">
<claim-text>Das Verfahren gemäß Anspruch 2, wobei wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, oder wenn Beide Aufwärtsverbindungssteuerungsinformationen und Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, <maths id="math0174" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="false"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>;</mo></math><img id="ib0174" file="imgb0174.tif" wi="28" he="9" img-content="math" img-format="tif" inline="yes"/></maths> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δ<i>β</i>), Δ<i>β</i> = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δ<i>β</i>, Δ<i>β</i> = 0, wobei C die ganze Anzahl von Kodierblöcken darstellt, <i>K<sub>r</sub></i> stellt die Anzahl von Bits dar, die in einem Kodierblock mit einem Index von r enthalten sind und der <i>M</i><sub>PUSCH</sub>, C und <i>K<sub>r</sub></i> werden erhalten gemäß der Signalisierung in dem anfänglichen PDCCH von dem Übertragungsblock.<!-- EPO <DP n="36"> --></claim-text></claim>
<claim id="c-de-01-0008" num="0008">
<claim-text>Das Verfahren gemäß Anspruch 2, wobei wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, <maths id="math0175" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="false"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0175" file="imgb0175.tif" wi="26" he="8" img-content="math" img-format="tif" inline="yes"/></maths> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup> -</i> 1). Δβ), Δβ = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup><sup2>MPR·K</sup2>S</sup></i> - 1) + Δβ, Δβ = 0, wobei C die ganze Anzahl von Kodierblöcken darstellt, <i>K<sub>r</sub></i> stellt die Anzahl von Bits dar, die in einem Kodierblock mit einem Index von r enthalten sind, und der <i>M</i><sub>PUSCH</sub>, C <i>und K<sub>r</sub></i> werden erhalten gemäß der Signalisierung in einem jüngsten PDCCH bezüglich des Übertragungsblocks.</claim-text></claim>
<claim id="c-de-01-0009" num="0009">
<claim-text>Das Verfahren gemäß Anspruch 1 oder 2, wobei die Aufwärtsverbindungssteuerinformation beinhaltet: Bestätigung (ACK) und/oder Nicht-Bestätigung (NACK), und/oder Rang-Anzeige (RI), Kanalqualitätsanzeige (CQI), und/oder Vorkodierungsmatrixanzeige (PMI).</claim-text></claim>
<claim id="c-de-01-0010" num="0010">
<claim-text>Ein Übertragungsleistungssteuerungssystem für einen physikalischen Aufwärtsverbindungsgeteiltenkanal, beinhaltend:
<claim-text>ein Modul zum Setzen der Leistung, das verwendet wird zum Setzen der Übertragungsleistung von dem physikalischen Aufwärtsverbindungsgeteiltenkanal gemäß der gesamten Anzahl von Bits, die in einer Kanalqualitätsanzeigesignalisierung beinhaltet sind und ihrer zugehöriger zyklischen Redundanzprüfung, genauso wie einen Amplitudenoffset, wenn nur Aufwärtsverbindungssteuerungsinformationen, aber keine Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden.</claim-text></claim-text></claim>
<claim id="c-de-01-0011" num="0011">
<claim-text>Das System gemäß Anspruch 10, wobei das Modul zum Setzen der Leistung verwendet wird die Übertragungsleistung von dem physikalischen Aufwärtsverbindungsgeteiltenkanal gemäß der folgenden Formel zu setzen:<!-- EPO <DP n="37"> --> <maths id="math0176" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>max</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced><mo>,</mo></math><img id="ib0176" file="imgb0176.tif" wi="108" he="15" img-content="math" img-format="tif"/></maths><br/>
wobei P<sub>MAX</sub> ein oberes Limit der Übertragungsleistung darstellt; M<sub>PUSCH</sub>(i) stellt die Bandbreite dar, die verwendet wird zum Übertragen des physikalischen Aufwärtsverbindungs-geteiltenkanal in Unterrahmen i;<br/>
P<sub>O_PUSCH</sub>(j) stellt die Zielreferenzleistung dar;<br/>
α stellt einen Pfadverlustkorrekturfaktor dar;<br/>
PL stellt den Pfadverlust dar;<br/>
f(i) stellt eine Leistungssteuerkorrekturfunktion von Unterrahmen i dar;<br/>
Δ<sub>TF</sub>(<i>i</i>) ist ein Übertragungsformatoffsetparameter;<br/>
wenn Ks= 1.25, Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) . Δβ) oder Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δβ; wenn K<sub>S</sub>= 0, Δ<sub>TF</sub>(<i>i</i>) = 0; K<sub>S</sub> ist ein Parameter, der durch die Funkressourcensteuerung auf einer höheren Ebene konfiguriert ist; <i>MPR</i> = <i>O</i>/<i>N<sub>RE</sub></i>, wobei N<sub>RE</sub> die Anzahl von Ressourcenelementen darstellt, <maths id="math0177" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0177" file="imgb0177.tif" wi="54" he="10" img-content="math" img-format="tif" inline="yes"/></maths> wobei <i>M</i><sub>PUSCH</sub> die Bandbreite darstellt, die zum Übertragen des physikalischen Aufwärtsverbindungsgeteiltenkanals genutzt wird, <maths id="math0178" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0178" file="imgb0178.tif" wi="16" he="9" img-content="math" img-format="tif" inline="yes"/></maths> stellt die Anzahl von Einzelträgerfrequenzgeteiltenmehrfachzugriffssignalen dar, die zum Übertragen des PUSCH genutzt werden, <maths id="math0179" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0179" file="imgb0179.tif" wi="10" he="8" img-content="math" img-format="tif" inline="yes"/></maths> stellt die Anzahl von Ressourcenelementen dar, die in einem Ressourcenblock beinhaltet sind; O stellt die Größe von Informationsbits dar, und Δ/β stellt den Amplitudenoffset dar; wobei wenn nur Aufwärtsverbindungssteuerungsinformationen, aber keine Aufwärtsverbindungsgeteiltekanaldaten über den Aufwärtsverbindungsgeteiltenkanal gesendet werden, <i>O</i> = <i>O<sub>CQI</sub></i>, und wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1)·Δβ), <maths id="math0180" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0180" file="imgb0180.tif" wi="27" he="9" img-content="math" img-format="tif" inline="yes"/></maths> oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup> -</i> 1) + Δβ; <maths id="math0181" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0181" file="imgb0181.tif" wi="43" he="10" img-content="math" img-format="tif" inline="yes"/></maths> wobei <i>O<sub>CQI</sub></i> stellt die gesamte Anzahl von Bits dar, die in der Kanalqualitätsanzeigesignalisierung und ihrer zugehörigen zyklischen Redundanzprüfung beinhaltet sind,<!-- EPO <DP n="38"> --> <maths id="math0182" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0182" file="imgb0182.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> stellt einen Amplitudenoffset von Kanalqualitätsanzeigeinformationen dar, und <i>M</i><sub>PUSCH</sub> wird erhalten gemäß einer Signalisierung in einem anfänglichen PDCCH von einem Übertragungsblock.</claim-text></claim>
<claim id="c-de-01-0012" num="0012">
<claim-text>Das System gemäß Anspruch 11, wobei das Modul zum Setzen der Leistung verwendet wird zum Erhalten des<maths id="math0183" num=""><math display="inline"><msubsup><mi>β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0183" file="imgb0183.tif" wi="12" he="7" img-content="math" img-format="tif" inline="yes"/></maths> von einer höhere Ebenensignalisierung;</claim-text></claim>
<claim id="c-de-01-0013" num="0013">
<claim-text>Das System gemäß Anspruch 11, wobei das Modul zum Setzen der Leistung verwendet wird zum Bestimmen der Werte von dem <i>0</i> und Δβ in der folgenden Weise wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, oder wenn Beide Aufwärtsverbindungssteuerungsinformationen und Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden: <i>0</i> = <i>TBS,</i> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δβ), Δβ = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) =10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δβ; Δβ= 0, wobei <i>TBS</i> die Größe von einem Übertragungsblock darstellt, und <i>TBS</i> und <i>M</i><sub>PUSCH</sub> werden gemäß der Signalisierung in dem anfänglichen PDCCH von dem Übertragungsblock erhalten.</claim-text></claim>
<claim id="c-de-01-0014" num="0014">
<claim-text>Das System gemäß Anspruch 11, wobei das Modul zum Setzen der Leistung verwendet wird zum Bestimmen der Werte von <i>0</i> und Δβ in der folgenden Weise wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden: <i>0</i> = <i>TBS,</i> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δβ), Δβ = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup> -</i> 1) + Δβ, Δβ= 0, wobei <i>TBS</i> die Größe von einem Übertragungsblock darstellt, und <i>TBS</i> und <i>M</i><sub>PUSCH</sub> werden gemäß der Signalisierung in einem jüngsten PDCCH bezüglich des Übertragungsblocks erhalten.<!-- EPO <DP n="39"> --></claim-text></claim>
<claim id="c-de-01-0015" num="0015">
<claim-text>Das System gemäß Anspruch 11, wobei das Modul zum Setzen der Leistung verwendet wird zum Bestimmen der Werte von <i>0</i> und Δ/β in der folgenden Weise wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, oder wenn Beide Aufwärtsverbindungssteuerungsinformationen und Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden, <maths id="math0184" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="false"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0184" file="imgb0184.tif" wi="27" he="8" img-content="math" img-format="tif" inline="yes"/></maths> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δβ), Δβ = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δβ, Δβ = 0, wobei C die ganze Anzahl von Kodierblöcken darstellt, <i>K<sub>r</sub></i> stellt die Anzahl von Bits dar, die in einem Kodierblock mit einem Index von r enthalten sind und <i>M</i><sub>PUSCH</sub>, C und <i>K<sub>r</sub></i> werden erhalten gemäß der Signalisierung in dem anfänglichen PDCCH von dem Übertragungsblock.</claim-text></claim>
<claim id="c-de-01-0016" num="0016">
<claim-text>Das System gemäß Anspruch 11, wobei das Modul zum Setzen der Leistung verwendet wird zum Bestimmen der Werte von <i>0</i> und Δβ in der folgenden Weise wenn nur Aufwärtsverbindungsgeteiltekanaldaten über den physikalischen Aufwärtsverbindungsgeteiltenkanal gesendet werden: <maths id="math0185" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="false"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0185" file="imgb0185.tif" wi="26" he="9" img-content="math" img-format="tif" inline="yes"/></maths> wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) · Δβ), <i>Δβ</i> = 1, oder wenn Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> - 1) + Δβ, Δβ = 0, wobei C die ganze Anzahl von Kodierblöcken darstellt, <i>K<sub>r</sub></i> stellt die Anzahl von Bits dar, die in einem Kodierblock mit einem Index von r enthalten sind, und der <i>M</i><sub>PUSCH</sub>, C und <i>K<sub>r</sub></i> werden erhalten gemäß der Signalisierung in einem jüngsten PDCCH bezüglich des Übertragungsblocks.</claim-text></claim>
</claims>
<claims id="claims03" lang="fr"><!-- EPO <DP n="40"> -->
<claim id="c-fr-01-0001" num="0001">
<claim-text>Procédé de commande de puissance de transmission pour un canal physique partagé en liaison montante, comprenant: quand il y a uniquement des informations de commande de liaison montante mais pas de données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, le réglage de la puissance de transmission du canal physique partagé en liaison montante en fonction du nombre total de bits contenus dans une signalisation d'indication de qualité de canal et son contrôle de redondance cyclique correspondant ainsi qu'un décalage d'amplitude.</claim-text></claim>
<claim id="c-fr-01-0002" num="0002">
<claim-text>Procédé selon la revendication 1, dans lequel la puissance de transmission du canal physique partagé en liaison montante est réglée conformément à la formule suivante : <maths id="math0186" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced></math><img id="ib0186" file="imgb0186.tif" wi="150" he="9" img-content="math" img-format="tif"/></maths><br/>
où P<sub>MAX</sub> représente une limite supérieure de la puissance de transmission ;<br/>
M<sub>PUSCH</sub>(i) représente la largeur de bande utilisée pour transmettre le canal physique partagé en liaison montante dans la sous-trame i;<br/>
P<sub>O_PUSCH</sub>(j) représente la puissance de référence cible;<br/>
α représente un facteur de correction d'affaiblissement sur le trajet;<br/>
PL représente l'affaiblissement sur le trajet;<br/>
f(i) représente une fonction de correction de la commande de puissance de la sous-trame i ;<br/>
Δ<sub>TF</sub>(i) est un paramètre de décalage du format de transmission ;<br/>
quand K<sub>S</sub>=1,25, Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> -1)·Δβ) ou Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i> -1) + Δ<i>β</i> ;<br/>
quand K<sub>S</sub>=0, Δ<sub>TF</sub>(i)=0 ; KS est un paramètre configuré par commande de ressource radio à une couche haute ; MPR=O/N<sub>RE</sub>, où N<sub>RE</sub> représente le nombre d'éléments de ressource, <maths id="math0187" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0187" file="imgb0187.tif" wi="63" he="12" img-content="math" img-format="tif" inline="yes"/></maths> où<!-- EPO <DP n="41"> --> <i>M</i><sub>PUSCH</sub> représente la largeur de bande utilisée pour transmettre le canal physique partagé en liaison montante, <maths id="math0188" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0188" file="imgb0188.tif" wi="18" he="10" img-content="math" img-format="tif" inline="yes"/></maths> représente le nombre de symboles d'accès multiple par répartition en fréquence à porteuse unique utilisés pour transmettre le PUSCH, <maths id="math0189" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0189" file="imgb0189.tif" wi="14" he="10" img-content="math" img-format="tif" inline="yes"/></maths> représente le nombre d'éléments de ressource contenus dans un bloc de ressources, <i>O</i> représente la taille des bits d'information et Δ<i>β</i> représente le décalage d'amplitude ;<br/>
dans lequel quand il y a uniquement des informations de commande de liaison montante mais pas de données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, O=O<sub>CQI</sub>, et quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δ<i>β</i>), <maths id="math0190" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0190" file="imgb0190.tif" wi="24" he="10" img-content="math" img-format="tif" inline="yes"/></maths> ou quand Δ<sub>TF</sub>(<i>i</i>) =10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup> -</i>1) + Δ<i>β</i>, <maths id="math0191" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup><mo>,</mo></math><img id="ib0191" file="imgb0191.tif" wi="40" he="10" img-content="math" img-format="tif" inline="yes"/></maths> où O<sub>CQI</sub> représente le nombre total de bits contenus dans la signalisation d'indication de qualité de canal et son contrôle de redondance cyclique correspondant, <maths id="math0192" num=""><math display="inline"><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0192" file="imgb0192.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths><br/>
représente un décalage d'amplitude de l'information d'indication de qualité de canal, et <i>M</i><sub>PUSCH</sub> est obtenu conformément à une signalisation dans un PDCCH initial d'un bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0003" num="0003">
<claim-text>Procédé selon la revendication 2, dans lequel <maths id="math0193" num=""><math display="inline"><msubsup><mi mathvariant="normal">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0193" file="imgb0193.tif" wi="11" he="8" img-content="math" img-format="tif" inline="yes"/></maths> est notifié par une signalisation de couche haute.</claim-text></claim>
<claim id="c-fr-01-0004" num="0004">
<claim-text>Procédé selon la revendication 2 ou 3, dans lequel la valeur de <maths id="math0194" num=""><math display="inline"><msubsup><mi mathvariant="normal">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0194" file="imgb0194.tif" wi="11" he="9" img-content="math" img-format="tif" inline="yes"/></maths> est 0,750, 1,000, 1,125, 1,250, 1,375, 1,625, 1,750, 2,000, 2,250, 2,500, 2,875, 3,125, 3,500, 4,000, 5,000 ou 6,250.</claim-text></claim>
<claim id="c-fr-01-0005" num="0005">
<claim-text>Procédé selon la revendication 2, dans lequel quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, ou quand il y a à la fois des informations de commande de liaison montante et des données de canal<!-- EPO <DP n="42"> --> partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, O=TBS, quand Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> -1)·Δ<i>β</i>), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup> -</i>1) + Δβ, Δβ=0, où TBS représente la taille d'un bloc de transmission, et TBS et M<sub>PUSCH</sub> sont obtenus conformément à la signalisation dans le PDCCH initial du bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0006" num="0006">
<claim-text>Procédé selon la revendication 2, dans lequel quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, O=TBS, quand Δ<sub>TF</sub>(<i>i</i>)=10.log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ, Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR.K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>, Δβ=0, où TBS représente la taille d'un bloc de transmission, et TBS et M<sub>PUSCH</sub> sont obtenus conformément à une signalisation dans un PDCCH le plus récent associé au bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0007" num="0007">
<claim-text>Procédé selon la revendication 2, dans lequel quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, ou quand il y a à la fois des informations de commande de liaison montante et des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, <maths id="math0195" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0195" file="imgb0195.tif" wi="27" he="14" img-content="math" img-format="tif" inline="yes"/></maths> quand Δ<sub>TF</sub> (<i>i</i>) =10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)<i>·</i>Δ<i>β</i>), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub>(2<i><sup>MPR.K<sub2>S</sub2></sup>-</i>1) + Δ<i>β</i>, Δβ=0, où C représente le nombre total de blocs de codage, K<sub>r</sub> représente le nombre de bits contenus dans un bloc de codage avec un indice de r, et le M<sub>PUSCH</sub>, C et K<sub>r</sub> sont obtenus conformément à la signalisation dans le PDCCH initial du bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0008" num="0008">
<claim-text>Procédé selon la revendication 2, dans lequel quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal<!-- EPO <DP n="43"> --> physique partagé en liaison montante, <maths id="math0196" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0196" file="imgb0196.tif" wi="32" he="15" img-content="math" img-format="tif" inline="yes"/></maths> quand Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>) = 10 · log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1) + Δ<i>β</i>, Δβ=0, où C représente le nombre total de blocs de codage, K<sub>r</sub> représente le nombre de bits contenus dans un bloc de codage avec un indice de r, et le M<sub>PUSCH</sub>, C et K<sub>r</sub> sont obtenus conformément à une signalisation dans un PDCCH le plus récent associé au bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0009" num="0009">
<claim-text>Procédé selon la revendication 1 ou 2, dans lequel l'information de commande de liaison montante inclut: Acknowledge (ACK), et/ou Non-Acknowledge (NACK), et/ou Rank Indication (RI), Channel Quality Indication (CQI), et/ou Precoding Matrix Indicator (PMI).</claim-text></claim>
<claim id="c-fr-01-0010" num="0010">
<claim-text>Système de commande de puissance de transmission pour un canal physique partagé en liaison montante, comprenant un module de réglage de puissance, utilisé pour régler la puissance de transmission du canal physique partagé en liaison montante conformément au nombre total de bits contenus dans une signalisation d'indication de qualité de canal et son contrôle de redondance cyclique correspondant ainsi qu'un décalage d'amplitude, quand il y a uniquement des informations de commande de liaison montante mais pas de données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante.</claim-text></claim>
<claim id="c-fr-01-0011" num="0011">
<claim-text>Système selon la revendication 10, dans lequel le module de réglage de puissance est utilisé pour régler la puissance de transmission du canal physique partagé en liaison montante conformément à la formule suivante: <maths id="math0197" num=""><math display="block"><msub><mi>P</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced><mo>=</mo><mi>min</mi><mfenced open="{" close="}" separators=""><msub><mi>P</mi><mi>MAX</mi></msub><mo>,</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mfenced separators=""><msub><mi>M</mi><mi>PUSCH</mi></msub><mfenced><mi>i</mi></mfenced></mfenced><mo>+</mo><msub><mi>P</mi><mi>O_PUSCH</mi></msub><mfenced><mi>j</mi></mfenced><mo>+</mo><mi>α</mi><mo>⋅</mo><mi mathvariant="italic">PL</mi><mo>+</mo><msub><mi mathvariant="normal">Δ</mi><mi>TF</mi></msub><mfenced><mi>i</mi></mfenced><mo>+</mo><mi>f</mi><mfenced><mi>i</mi></mfenced></mfenced></math><img id="ib0197" file="imgb0197.tif" wi="150" he="9" img-content="math" img-format="tif"/></maths><br/>
où P<sub>MAX</sub> représente une limite supérieure de la puissance de transmission ;<br/>
<!-- EPO <DP n="44"> -->M<sub>PUSCH</sub>(i) représente la largeur de bande utilisée pour transmettre le canal physique partagé en liaison montante dans la sous-trame i ;<br/>
P<sub>O_PUSCH</sub>(j) représente la puissance de référence cible ;<br/>
α représente un facteur de correction d'affaiblissement sur le trajet ;<br/>
PL représente l'affaiblissement sur le trajet ;<br/>
f(i) représente une fonction de correction de la commande de puissance de la sous-trame i ; ;<br/>
Δ<sub>TF</sub>(i) est un paramètre de décalage du format de transmission ;<br/>
quand Ks=1,25, Δ<sub>TF</sub> (<i>i</i>) = 10·log<sub>10</sub> ((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δ<i>β</i>) ou Δ<sub>TF</sub>(<i>i</i>) = 10·log<sub>10</sub> (2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i> ; quand Ks=0, Δ<sub>TF</sub>(i)=0 ; KS est un paramètre configuré par commande de ressource radio à une couche haute ; MPR=O/N<sub>RE</sub>, où N<sub>RE</sub> représente le nombre d'éléments de ressource, <maths id="math0198" num=""><math display="inline"><msub><mi>N</mi><mi mathvariant="italic">RE</mi></msub><mo>=</mo><msub><mi>M</mi><mi>PUSCH</mi></msub><mo>⋅</mo><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup><mo>⋅</mo><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup><mo>,</mo></math><img id="ib0198" file="imgb0198.tif" wi="63" he="12" img-content="math" img-format="tif" inline="yes"/></maths> où <i>M</i><sub>PUSCH</sub> représente la largeur de bande utilisée pour transmettre le canal physique partagé en liaison montante, <maths id="math0199" num=""><math display="inline"><msubsup><mi>N</mi><mi>symb</mi><mi>PUSCH</mi></msubsup></math><img id="ib0199" file="imgb0199.tif" wi="19" he="10" img-content="math" img-format="tif" inline="yes"/></maths> représente le nombre de signaux d'accès multiple par répartition en fréquence à porteuse unique utilisés pour transmettre le PUSCH, <maths id="math0200" num=""><math display="inline"><msubsup><mi>N</mi><mi>sc</mi><mi>RB</mi></msubsup></math><img id="ib0200" file="imgb0200.tif" wi="13" he="10" img-content="math" img-format="tif" inline="yes"/></maths> représente le nombre d'éléments de ressource contenus dans un bloc de ressources, <i>O</i> représente la taille des bits d'information et Δ<i>β</i> représente le décalage d'amplitude ;<br/>
dans lequel quand il y a uniquement des informations de commande de liaison montante mais pas de données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, O=O<sub>CQI</sub>, et quand Δ<sub>TF</sub>(<i>i</i>)10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), <maths id="math0201" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0201" file="imgb0201.tif" wi="22" he="9" img-content="math" img-format="tif" inline="yes"/></maths> ou quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>, <maths id="math0202" num=""><math display="inline"><mi mathvariant="normal">Δ</mi><mi>β</mi><mo>=</mo><mn>10</mn><mo>⋅</mo><msub><mi>log</mi><mn>10</mn></msub><mspace width="1em"/><msubsup><mi mathvariant="italic">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0202" file="imgb0202.tif" wi="41" he="11" img-content="math" img-format="tif" inline="yes"/></maths> où O<sub>CQI</sub> représente le nombre total de bits contenus dans la signalisation d'indication de qualité de canal et son contrôle de redondance cyclique correspondant, <maths id="math0203" num=""><math display="inline"><msubsup><mi mathvariant="normal">β</mi><mi mathvariant="italic">offset</mi><mi mathvariant="italic">CQI</mi></msubsup></math><img id="ib0203" file="imgb0203.tif" wi="12" he="9" img-content="math" img-format="tif" inline="yes"/></maths> représente un décalage d'amplitude de l'information d'indication de qualité<!-- EPO <DP n="45"> --> de canal, et <i>M</i><sub>PUSCH</sub> est obtenu conformément à une signalisation dans un PDCCH initial d'un bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0012" num="0012">
<claim-text>Système selon la revendication 11, dans lequel le module de réglage de puissance est utilisé pour obtenir le à partir d'une signalisation de couche haute.</claim-text></claim>
<claim id="c-fr-01-0013" num="0013">
<claim-text>Système selon la revendication 11, dans lequel le module de réglage de puissance est utilisé pour déterminer les valeurs de O et Δβ de la manière suivante quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, ou quand il y a à la fois des informations de commande de liaison montante et des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante : O=TBS, quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δ<i>β</i>), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>, Δβ=0, où TBS représente la taille d'un bloc de transmission, et TBS et M<sub>PUSCH</sub> sont obtenus conformément à la signalisation dans le PDCCH initial du bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0014" num="0014">
<claim-text>Système selon la revendication 11, dans lequel le module de réglage de puissance est utilisé pour déterminer les valeurs de O et Δβ de la manière suivante quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante : O=TBS, quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δβ), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>, Δβ=0, où TBS représente la taille d'un bloc de transmission, et TBS et M<sub>PUSCH</sub> sont obtenus conformément à une signalisation dans un PDCCH le plus récent associé au bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0015" num="0015">
<claim-text>Système selon la revendication 11, dans lequel le module de réglage de puissance est utilisé pour déterminer les valeurs de O et Δβ de la<!-- EPO <DP n="46"> --> manière suivante quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante, ou quand il y a à la fois des informations de commande de liaison montante et des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante: <maths id="math0204" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0204" file="imgb0204.tif" wi="24" he="15" img-content="math" img-format="tif" inline="yes"/></maths> quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)·Δ<i>β</i>), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>, Δβ=0, où C représente le nombre total de blocs de codage, K<sub>r</sub> représente le nombre de bits contenus dans un bloc de codage avec un indice de r, et M<sub>PUSCH</sub>, C et K<sub>r</sub> sont obtenus conformément à la signalisation dans le PDCCH initial du bloc de transmission.</claim-text></claim>
<claim id="c-fr-01-0016" num="0016">
<claim-text>Système selon la revendication 11, dans lequel le module de réglage de puissance est utilisé pour déterminer les valeurs de O et Δβ de la manière suivante quand il y a uniquement des données de canal partagé en liaison montante envoyées sur le canal physique partagé en liaison montante : <maths id="math0205" num=""><math display="inline"><mi>O</mi><mo>=</mo><mstyle displaystyle="true"><munderover><mo>∑</mo><mrow><mi>r</mi><mo>=</mo><mn>0</mn></mrow><mrow><mi>C</mi><mo>-</mo><mn>1</mn></mrow></munderover></mstyle><msub><mi>K</mi><mi>r</mi></msub><mo>,</mo></math><img id="ib0205" file="imgb0205.tif" wi="22" he="13" img-content="math" img-format="tif" inline="yes"/></maths> quand Δ<sub>TF</sub>(<i>i</i>)=10·log<sub>10</sub>((2<i><sup>MPR·K<sub2>S</sub2></sup></i> -1)·Δ<i>β</i>), Δβ=1, ou quand Δ<sub>TF</sub>(<i>i</i>) =10·log<sub>10</sub>(2<i><sup>MPR·K<sub2>S</sub2></sup></i>-1)+Δ<i>β</i>, Δβ=0, où C représente le nombre total de blocs de codage, K<sub>r</sub> représente le nombre de bits contenus dans un bloc de codage avec un indice de r, et M<sub>PUSCH</sub>, C et K<sub>r</sub> sont obtenus conformément à une signalisation dans un PDCCH le plus récent associé au bloc de transmission.</claim-text></claim>
</claims>
<drawings id="draw" lang="en"><!-- EPO <DP n="47"> -->
<figure id="f0001" num="1"><img id="if0001" file="imgf0001.tif" wi="165" he="110" img-content="drawing" img-format="tif"/></figure>
</drawings>
</ep-patent-document>
