FIELD OF THE INVENTION
[0001] The present invention relates to the technical field of radomes and antenna systems
housing.
BACKGROUND OF THE INVENTION
[0002] As used herein, by "radome" is meant the box-like structure transparent to radio-frequency
radiation, used to house/enclose an antenna.
[0003] A radome may be further configured to enclose an antenna system including more than
one antenna element (such as, multi-band antenna systems). For instance, a same radome
may be intended to enclose a plurality of ground-based antenna elements of a communication
base station.
[0004] In this respect, various radome structures and antenna housing methods are known
in the prior art, but they have not been entirely satisfactory and alternative solutions
are required.
SUMMARY OF THE INVENTION
[0006] This summary is not an exhaustive overview of the disclosed embodiments. It is not
intended to identify critical elements or to delineate the scope of these various
embodiments. Its sole purpose is to present some concepts in a simplified form as
a prelude to the more detailed description that is discussed later.
[0007] Various embodiments relate to an apparatus comprising and antenna and a radome enclosing
the antenna, as set out in independent claim 1. The antenna is provided with a connector,
the radome comprises a side opening provided in a side wall of the radome, this side
opening giving access to the connector, this connector being located inside the radome.
In accordance with a broad aspect, the connector is located in front of the side opening.
[0008] In accordance with another broad aspect, the side opening is provided in the form
of pre-cut shape formed in the side wall of the radome.
[0009] In accordance with another broad aspect, the above radome further comprises a cover
for covering the side opening.
[0010] In accordance with another broad aspect, the electrical property of the cover is
sensibly the same as that of the radome.
[0011] In accordance with another broad aspect, the cover includes a pre-cut hole intended
for leading a cable to be connected to the connector.
[0012] While the various embodiments are susceptible to various modification and alternative
forms, specific embodiments thereof have been shown by way of example in the drawings.
It should be understood, however, that the description herein of specific embodiments
is not intended to limit the various embodiments to the particular forms disclosed.
[0013] It may of course be appreciated that in the development of any such actual embodiments,
implementation-specific decisions should be made to achieve the developer's specific
goal, such as compliance with system-related and business-related constraints. It
will be appreciated that such a development effort might be time consuming but may
nevertheless be a routine understanding for those or ordinary skill in the art having
the benefit of this disclosure.
DESCRIPTION OF THE DRAWING
[0014] The objects, advantages and other features of various embodiments will become more
apparent from the following disclosure and claims. The following non-restrictive description
of preferred embodiments is given for the purpose of exemplification only with reference
to the accompanying drawing in which
- FiG.1 and FiG.2 are two schematic diagrams illustrating two side view of a radome
according to one embodiment;
- FiG.3 is a schematic diagram illustrating an installed radome according to one embodiment;
- FiG.4 is schematic diagram illustrating the packaging of a radome according to one
embodiment.
DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
[0015] With reference to figure 1 and 2, there is shown a radome
1 including a side opening
2 located in the side wall of the radome
1 (i.e. in a lateral wall of the radome
1).
[0016] The radome
1 may be of any structure suitable for housing/enclosing an antenna system. For instance,
the radome
1 may have a rounded rectangular cross section, a circular/semicircular cross section,
an ovoid/semi-avoid cross section, or any combination of them.
[0017] The side opening
2 serves as an aperture to permit a cable to be connected to an antenna connector
3 located inside the radome
1. Thus, the side opening
2 may be of any suitable shape (for instance, rectangular, circular, elliptical) and
size suitable for passing at least a cable (e.g. a coaxial cable) therethrough.
[0018] The side opening
2 may be formed in the radome
1 afterwards by appropriate and well-known machining methods. Alternatively, the side
opening
2 may be planned during the radome production.
[0019] In one embodiment, the side openings
2 are provided in the form of pre-cut shape (i.e. a perforate outline of the side opening
2) formed in the side wall of the radome
1.
[0020] The side opening
2 gives access to antenna connectors
3 located inside the radome
1. In other words, this side opening
2 is intended for passing therethrough a cable to be connected to at least an antenna
connector
3 located inside the radome.
[0021] It results in that the antenna connectors
3 are placed/located in counter-relief and not in projection (overhanging) with respect
to the side wall of the radome. In other words, the antennas connectors
3 are inside the global shape of the radome
1 and neither the side opening
2 nor the antenna connectors
3 does extend beyond the outer surface of the radome
1 (i.e. nothing does exceed the global dimensions of the radome
1).
[0022] The side opening
2 may be at different high of the lateral wall of the radome
1. Preferably, this side opening
2 is located in the side wall of the radome
1 so that it is close to at least an enclosed antenna element in order to give access
to the connector
3 of this enclosed antenna element.
[0023] In one embodiment, a subset of connectors
3 of enclosed antenna elements is mounted on a connector support
4. The connector support
4 is set facing to (i.e. in front of) the side opening
2 so that this side opening gives access to connectors mounted on this connector support
4. In combination, another subset of connectors is placed at the bottom of the radome.
[0024] Accordingly, at least a subset of connectors
3 of the enclosed antenna system are placed inside the structure of the radome
1, offsetted from the radome bottom (i.e. shifted by an offset from the bottom of the
radome), and accessible through a side opening
2 formed in the side wall of the radome
1.
[0025] In order to not alter the electrical property of the radome, the side opening
2 is formed in the side wall opposite to the enclosed antennas orientation (namely,
behind the antenna system).
[0026] In one embodiment shown in figure 1, the connector support
4 is fixed to the antenna system
5. At least a connector (such as, type "N" connectors, "7/16" connectors) is mounted
on the connector support
4.
[0027] The connector support
4 is a plate arranged so that facilitating the accessibility and connectivity of connectors
3 mounted thereon from the side opening
2. In other words, the connector support
4 is configured so that when the connectors
3 are mounted thereon, the side opening
2 gives directly onto these connectors. It results in that the mounted connectors
3 are easily reachable from the side opening
2.
[0028] In one embodiment, the connector support
4 comprises a part arranged in a sensibly stair-step shape. Each step in this stair-step
shape may receive at least a connector. For instance, the connector support
4 comprises a folded aluminum plate, or any other soldered/folded metal plate in a
sensibly stair-step shape. The connector support
4 is fixed inside the radome so that the stair-step shape is oblique (i.e. slantwise)
with respect to the plane of the side opening
2 (see figure 2).
[0029] In an alternative embodiment, the connector support
4 is fixed to the inner surface of the radome
1.
[0030] With reference now to figure 3, a cover
32 for the side opening with convenient mounting means (for instance, with a sealing
assembly) is provided so as to protect the connectors.
[0031] A cover
32 (i.e. a protection, a covering shell) is placed on top for covering the side opening.
This cover hides connectors from potential damage.
[0032] Preferably, the cover
32 is of the same material as that of the radome
31 (i.e. having the same or similar electrical property). More generally, the electrical
property of the cover
32 is sensibly the same as that of the radome
31.
[0033] Further, pre-cut holes
33 are provided in the cover
32. These pre-cut holes
33 are intended to be, if needed, removed and leading cables
34 to the connectors located in front of the side opening. In one embodiment, the pre-cut
holes
33 are of O-shaped. Alternatively, these pre-cut holes
33 are U-shaped, or semi-circular shaped and performed on the outline of the cover
32.
[0034] In one embodiment, more than one dedicated side opening are formed in the side wall
of the radome (for instance, side openings
2 and
11 in figure 1).
[0035] According to one advantage of the above-described embodiments, the radome reduces
input cable
6 lengths of the antenna system
5 (see figure 1). In fact, the side opening and the antenna element(s) that its/their
connector(s) is/are to be received in the side opening may be located close to each
other. It results in that the length of the attachment means
6 of the connector to the antenna element is reduced. Advantageously, no bending and/or
extra length of the attachment means imply
- less loss for the antenna element, and consequently better gain and higher performance
for the antenna system; and
- a cost reduction of the attachment means (i.e. shorter internal input cables).
[0036] According to another advantage of the above-described embodiments, the housing/enclosing
operation (also said, radoming operation) is no more complicated than housing a standard
antenna. In fact, both the assembling process and the obtained assembly (i.e. radome
plus antenna systems) providing a plurality of connectors are simplified.
[0037] According to another advantage of the above-described embodiments, the side opening
does not substantially change the electrical property of the radome as it is located
behind the antennas (i.e. outside radiation directions of the antenna).
[0038] According to another advantage of the above-described embodiments, the radome allows
an easy management and implementation of a plurality of connectors.
[0039] According to another advantage of the above-described embodiments, the arrangement
of the connector support (stair-step shape fixed obliquely with respect to the side
opening plane) inside the radome provides enough clearance allowing easy cable installation,
easy/accessible connectivity, and easy sealing (see figures 1 and 2).
[0040] According to another advantage of the above-described embodiments, the radome including
a plurality of side openings in pre-cut shape (perforated lines defining the side
openings) permits to purchase an antenna system with more connectors than required
at the beginning, and then remove the pre-cut shape/profile of a side opening so as
to upgrade the antenna system. For instance, one can first use an antenna as a triple
band, and then be able to upgrade this antenna to a hexa-band antenna by just removing
the pre-cut side opening and connect the additional connectors located in front of
this side opening. Advantageously, this allows anticipating the evolution of the network
coverage easily and with few financial impacts.
[0041] According to another advantage of the above-described embodiments, provided pre-cut
holes in the cover permit to easily add and lead cables intended to be connected to
connectors mounted in front of the side opening (see figure 3).
[0042] According to another advantage of the above-described embodiments, the radome may
be used for enclosing different antenna systems (i.e. such as "tri-band", "quad-band",
"penta-band" or "hexa-band" antennas), regardless of the number of connectors. Advantageously,
this represents a very important cost and development time reduction.
[0043] According to another advantage of the above-described embodiments, there is no connector
or covering blister which extend beyond the outer shape of the radome. It results
in that, advantageously, the protection of connectors during assembly, transportation,
installation and antenna lifetime is increased. Therefore, there is no need for extra
protection for added connectors.
[0044] According to another advantage of the above-described embodiments, the packaging
of the radome is simplified (see figure 4) as there is no connector or covering blister
which extend beyond the outer shape of the radome.
[0045] According to another advantage of the above-described embodiments, the external shape
of the radome is unchanged, while supporting a plurality of antenna connectors. It
results in that, advantageously, no wind loading is induced.
[0046] According to another advantage of the above-described embodiments, the number of
the enclosed antenna may be increased without increasing the wind loading of the radome.
Therefore, no additional stiffening of the masts to prevent differential movement
of the antenna is needed.
[0047] According to another advantage of the above-described embodiments, the arrangement
of connectors inside the radome allows the radome to support the environment wind
loads.
[0048] According to another advantage of the above-described embodiments, there are no external
parts as blister in the radome. The described solution has less impact on wind loads.
Simple simulations of wind loading shows that an extra blister adds about 10% more
wind loading for side wind orientation compared to an antenna with no added feature
(i.e. when no need for extra connectors).
[0049] According to another advantage of the above-described embodiments, the covering shell
placed at the end of the installation (after cable to connecter attachment and sealing)
has insignificant impact on wind load.
[0050] According to another advantage of the above-described embodiments, the radome withstands
wind pressures, rain, snow and ice, as there is no overhanging part in the radome
(the connectors being inside the radome). It results in that advantageously, the radome
supports a plurality of antennas while best satisfying environmental requirements.
[0051] According to another advantage of the above-described embodiments, there is available
place remaining at the back of the antenna system to install peripheral devices as
Remote Radio Head (RRH). The integration of RRH on the back of the antenna system
is then facilitated. Advantageously, there are no bending radius constraints or extra
blister so that it is possible to directly connect cables to the RRH. Further, cables
can easily goes along the radome and be plug to the RRH.
[0052] According to another advantage of the above-described embodiments, the structural
design of the radome satisfy load requirements, and avoid differential movements of
the antenna due to the wind which may cause significant shift of equi-signal paths,
or even worse the collapse of the radome itself.
[0053] According to another advantage of the above-described embodiments, the radome is
a low wind-loading radome while being able to enclose a plurality of antennas. Accordingly,
the radome may be used in areas where wind with high velocities is likely to be encountered.
[0054] According to another advantage of the above-described embodiments, the radome meets
the development of multiband antennas where a plurality of sub-antennas operating
in different frequency bands has to cohabit together in a common box kit. In fact,
the radome provides enough space, in addition to the available space at the bottom
of the radome, for placing a plurality of connectors with the required clearance around
the connectors. Advantageously, this allows quick cable to connector attachment and
detachment, properly tightening of cables to connects, and easy physical access to
connectors.
[0055] According to another advantage of the above-described embodiments, the radome may
enclose an antennas structure involving a plurality of connectors. For instance, an
"antenna" structure may include 12 antenna arrays (6 ports +45° and 6 ports -45°)
within different frequency bands. All these arrays require at least dedicated connector
(some arrays are even eventually connected to duplexers or triplexers which can multiply
again the number of connections).
1. Vorrichtung, Folgendes umfassend:
eine Antenne, die einen Steckverbinder (3) umfasst,
ein Radom (1), das die Antenne umschließt und eine Seitenöffnung (2) umfasst, die
in einer Seitenwand des Radoms (1) vorgesehen ist, wobei die Öffnung (2) als Durchlass
dient, um ein mit dem Steckverbinder (3) zu verbindendes Kabel hindurchzuführen, wobei
sich der Steckverbinder (3) innerhalb des Radoms (1) befindet,
dadurch gekennzeichnet, dass die Antenne ferner eine Steckverbinderhalterung (4) umfasst, auf der der Steckverbinder
(3) montiert ist, wobei die Steckverbinderhalterung (4) ein Teil umfasst, das im Wesentlichen
treppenstufenförmig angeordnet ist, wobei eine Stufe dieser Treppenstufenform dazu
ausgelegt ist, zumindest den Steckverbinder (3) aufzunehmen, wobei das im Wesentlichen
treppenstufenförmige Teil in Bezug zur Ebene der Seitenöffnung (2) innerhalb des Radoms
schräg angeordnet ist.
2. Vorrichtung nach Anspruch 1, wobei sich der Steckverbinder vor der Seitenöffnung (2)
befindet.
3. Vorrichtung nach einem der Ansprüche 1 oder 2, wobei die Seitenöffnung (2) in Form
einer in der Seitenwand des Radoms (1) vorgestanzten Form vorgesehen ist.
4. Vorrichtung nach einem der vorstehenden Ansprüche, ferner eine Abdeckung (32) umfassend,
um die Seitenöffnung abzudecken.
5. Vorrichtung nach Anspruch 4, wobei die elektrischen Eigenschaften der Abdeckung (32)
sinnvollerweise die gleichen sind wie die des Radoms (31).
6. Vorrichtung nach Anspruch 4 oder 5, wobei die Abdeckung (32) ein vorausgestanztes
Loch (33) enthält, das dazu bestimmt ist, ein mit dem Steckverbinder zu verbindendes
Kabel (34) dort hindurchzuführen.
7. Vorrichtung nach einem der Ansprüche 1 bis 6, ferner einen entfernten Funkkopf umfassend.