BACKGROUND OF THE INVENTION
1. FIELD OF THE INVENTION
[0001] The present invention generally relates to a fire alarm, and more particularly to
an integrated fire alarm system and method.
2. DESCRIPTION OF RELATED ART
[0002] A smoke detector is one type of fire alarm that issues a sound or a flash of light
indicating fire when it senses smoke. However, conventional fire alarms usually issue
false or nuisance alarms due to their limited detection capability. Therefore, manpower
is commonly wasted, and the fire alarms may lose their credibility. More importantly,
people may have doubt about the alarm issued by the fire alarm when a real fire happens,
thereby losing an opportunity to put out a fire or to escape.
[0003] Although the rate of occurring false alarms may be reduced by decreasing sensitivity
or increasing triggered threshold of the fire alarm, time to alert people to a fire
may thus be delayed. On the contrary, the rate of occurring false alarms would be
increased if the sensitivity is increased or the triggered threshold is reduced. When
multiple fire alarms are employed, people may be confused when some fire alarms have
issued alarms while other fire alarms have not.
[0004] For the foregoing reasons, a need has arisen to propose a novel fire alarm scheme
to overcome drawbacks of the conventional fire alarms and to reduce the rate of false
alarms.
SUMMARY OF THE INVENTION
[0005] In view of the foregoing, it is an object of the embodiment of the present invention
to provide an integrated fire alarm system and method capable of effectively reducing
the rate of false alarms and enhancing credibility of the fire alarm.
[0006] According to one embodiment, an integrated fire alarm method provides at least two
fire detectors of different types for respectively detecting different physical properties,
and provides at least one notification device. One of the at least two fire detectors
is selected as a preliminary detector and remaining at least one fire detector as
a primary detector. A preliminary detection signal is received from the preliminary
detector, and is compared with a predetermined corresponding threshold; at least one
notification device is controlled to issue an early-warning notification if the preliminary
detection signal is greater than the corresponding threshold. A primary detection
signal is received from the primary detector after issuing the early-warning notification,
and is compared with a predetermined corresponding threshold; the at least one notification
device is controlled to issue a formal notification if the primary detection signal
is greater than the corresponding threshold.
BRIEF DESCRIPTION OF THE DRAWINGS
[0007]
FIG. 1 shows a block diagram illustrating an integrated fire alarm system according
to one embodiment of the present invention;
FIG. 2 shows a flow diagram illustrating an integrated fire alarm method according
to one embodiment of the present invention; and
FIG. 3 shows a flow diagram illustrating an integrated fire alarm method according
to another embodiment of the present invention.
DETAILED DESCRIPTION OF THE INVENTION
[0008] FIG. 1 shows a block diagram illustrating an integrated fire alarm system 100 according
to one embodiment of the present invention. According to one aspect of the embodiment,
the integrated fire alarm system (system hereinafter) 100 may include at least two
fire detectors of different types for respectively detecting different physical properties
or matters. An amount of the fire detector(s) of each type may be one or a plurality
(for example, disposed on different floors in the building).
[0009] In the embodiment, the fire detectors may include a smoke detector 11, a carbon monoxide
detector 12 and a heat (or temperature) detector 13. Specifically, the smoke detector
11 can detect a concentration of smoke, for example, by photoelectric effect or ionization
process; the carbon monoxide detector 12 can detect a concentration of carbon monoxide,
for example, by chemical transduction process; and the heat detector 13 can detect
temperature or a (calculated) rate of temperature rise, for example, by thermoelectric
effect.
[0010] The system 100 of the embodiment may include an integrated controller 14 coupled
to receive detection signals from the smoke detector 11, the carbon monoxide detector
12 and the heat detector 13, the detection signals indicating physical quantities
of the detected physical properties, respectively. In the embodiment, the system 100
may include at least one notification device, such as visual notification device 15
and/or audio notification device 16, coupled to and controlled by the integrated controller
14 to timely issue a visual notification (e.g., flash of light) and/or an audio notification
(e.g., sound or voice). According to another aspect of the embodiment, the visual
notification device 15 and/or the audio notification device 16 is controlled by the
integrated controller 14, instead of controlled by the detector as in the conventional
system.
[0011] The system 100 of the embodiment may include a transceiver 17, coupled to the integrated
controller 14, for communicating with an external (e.g., outdoor) system such that
status of the system 100 may be transferred to other system or status of other system
may be received. In one example, the other system may be a mobile device such as mobile
phone. The transceiver 17 of the embodiment may be a wired transceiver or a wireless
transceiver. According to a further aspect of the embodiment, the transceiver 17 is
controlled by the integrated controller 14, instead of controlled by the detector
as in the conventional system. The smoke detector 11, the carbon monoxide detector
12, the heat detector 13, the integrated controller 14, the visual notification device
15, the audio notification device 16 and the transceiver 17 as set forth above may
be disposed in the same indoor area or in a mobile device such as mobile phone.
[0012] FIG. 2 shows a flow diagram illustrating an integrated fire alarm method 200A, which
may be executed by the integrated controller 14, according to one embodiment of the
present invention. Specifically, in step 21, at least two fire detectors of different
types for respectively detecting different physical properties or matters may be provided.
As exemplified in FIG. 1, the fire detectors may include a smoke detector 11, a carbon
monoxide detector 12 and a heat detector 13. Moreover, at least one notification device
(e.g., visual notification device 15 and audio notification device 16 as exemplified
in FIG. 1) may be provided.
[0013] In step 22A, one of the at least two fire detectors may be selected as a preliminary
detector, and remaining at least one fire detector as a primary detector. In the embodiment,
the smoke detector 11 is selected as the preliminary detector, and the carbon monoxide
detector 12 or the heat detector 13 as the primary detector.
[0014] In step 23A, the integrated controller 14 may receive a preliminary detection signal
from the preliminary detector, and compare the preliminary detection signal with a
predetermined first threshold. If the preliminary detection signal is greater than
the first threshold, the integrated controller 14 may control at least one notification
device to issue an early-warning notification (step 24).
[0015] In the embodiment, the integrated controller 14 may receive a preliminary detection
signal (representing a detected concentration of smoke) from the smoke detector 11.
If the concentration of smoke is greater than the first threshold, the integrated
controller 14 may control the visual notification device 15 and/or the audio notification
device 16 to issue an early-warning notification. At the same time, the integrated
controller 14 may control the transceiver 17 to transfer the early-warning notification
to other system (e.g., mobile deice).
[0016] Next, in step 25A, the integrated controller 14 may receive a primary detection signal
from the at least one primary detector, and compare the primary detection signal with
a predetermined (second/third) threshold. If the primary detection signal is greater
than the corresponding (second/third) threshold, the integrated controller 14 may
control at least one notification device to issue a formal notification (step 26),
which is used to replace the early-warning notification. Otherwise, if the determination
of step 25A is negative, the flow goes back to step 23A. In another embodiment, if
steps 23A-24-25A (i.e., the early-warning notification is issued but step 25A is negative)
repetitively happen for several times reaching a predetermined value, the flow goes
to step 26.
[0017] In the embodiment, the integrated controller 14 may receive a primary detection signal
(representing a detected concentration of carbon monoxide) from the carbon monoxide
detector 12, and/or may receive a primary detection signal (representing detected
temperature or a calculated rate of temperature rise) from the heat detector 13. If
the concentration of carbon monoxide is greater than the second threshold or the temperature
is greater than the third threshold, the integrated controller 14 may control the
visual notification device 15 and/or the audio notification device 16 to issue a formal
notification. At the same time, the integrated controller 14 may control the transceiver
17 to transfer the formal notification to other system (e.g., mobile deice). It is
appreciated that light or sound issued by the visual notification device 15 or the
audio notification device 16 may be different from that of the early-warning notification
to make the differentiation.
[0018] Subsequently, in step 27A, the integrated controller 14 may continuingly receive
the preliminary detection signal (from the preliminary detector), which is compared
with the first threshold, and continuingly receive the primary detection signal (from
the primary detector), which is compared with the corresponding (second/third) threshold.
If the preliminary detection signal is greater than the first threshold, and the primary
detection signal is greater than the corresponding (second/third) threshold, the integrated
controller 14 may control at least one notification device to issue a confirmed notification
(step 28), which is used to replace the formal notification. Otherwise, if the determination
of step 27A is negative, the flow goes back to step 23A.
[0019] In the embodiment, the integrated controller 14 may continuingly receive a preliminary
detection signal (representing a detected concentration of smoke) from the smoke detector
11; continuingly receive a primary detection signal (representing a detected concentration
of carbon monoxide) from the carbon monoxide detector 12; and/or continuingly receive
a primary detection signal (representing detected temperature or a calculated rate
of temperature rise) form the heat detector 13. If the concentration of smoke is greater
than the first threshold, and either the concentration of carbon monoxide is greater
than the second threshold or the temperature is greater than the third threshold,
the integrated controller 14 may control the visual notification device 15 and/or
the audio notification device 16 to issue a confirmed notification. At the same time,
the integrated controller 14 may control the transceiver 17 to transfer the confirmed
notification to other system (e.g., mobile deice). It is appreciated that light or
sound issued by the visual notification device 15 or the audio notification device
16 may be different from that of the early-warning or formal notification to make
the differen tiation.
[0020] FIG. 3 shows a flow diagram illustrating an integrated fire alarm method 200B, which
may be executed by the integrated controller 14, according to another embodiment of
the present invention. The integrated fire alarm method 200B of the present embodiment
is similar to the integrated fire alarm method 200A of the preceding embodiment (FIG.
2) with the following exceptions.
[0021] In the embodiment, in step 22B, the carbon monoxide detector 12 is selected as the
preliminary detector, and the smoke detector 11 or the heat detector 13 as the primary
detector. In step 23B, if the concentration of carbon monoxide is greater than the
second threshold, the integrated controller 14 may control at least one notification
device to issue an early-warning notification (step 24). In step 25B, if a concentration
of smoke is greater than the first threshold or temperature is greater than the third
threshold, the integrated controller 14 may control at least one notification device
to issue a formal notification (step 26). In step 27B, if a concentration of carbon
monoxide is greater than the second threshold, and either a concentration of smoke
is greater than the first threshold or temperature is greater than the third threshold,
the integrated controller 14 may control at least one notification device to issue
a confirmed notification. According to the embodiments, the smoke detector 11 is selected
as the preliminary detector while remaining at least one detector as the primary detector
in the integrated fire alarm method 200A (FIG. 2), or the carbon monoxide detector
12 is selected as the preliminary detector while remaining at least one detector as
the primary detector in the integrated fire alarm method 200B (FIG. 3). However, in
a further embodiment (not shown), the heat detector 13 may be selected as the preliminary
detector while remaining at least one detector as the primary detector.
1. An integrated fire alarm method, comprising:
providing at least two fire detectors of different types for respectively detecting
different physical properties;
providing at least one notification device;
selecting one of the at least two fire detectors as a preliminary detector and remaining
at least one fire detector as a primary detector;
receiving a preliminary detection signal from the preliminary detector, and comparing
the preliminary detection signal with a predetermined corresponding threshold;
controlling at least one notification device to issue an early-warning notification
if the preliminary detection signal is greater than the corresponding threshold;
receiving a primary detection signal from the primary detector after issuing the early-warning
notification, and comparing the primary detection signal with a predetermined corresponding
threshold; and
controlling the at least one notification device to issue a formal notification if
the primary detection signal is greater than the corresponding threshold.
2. The method of claim 1, after issuing the formal notification, further comprising a
step of controlling the at least one notification device to issue a confirmed notification,
if the preliminary detection signal is continuingly greater than the corresponding
threshold, and the primary detection signal is greater than the corresponding threshold.
3. The method of claim 2, further comprising a step of transferring the early-warning
notification, the formal notification or the confirmed notification.
4. The method of claim 1, wherein the at least two fire detectors comprise a smoke detector,
a carbon monoxide detector and a heat detector.
5. The method of claim 4, wherein the smoke detector is selected as the preliminary detector,
and the carbon monoxide detector or the heat detector as the primary detector.
6. The method of claim 4, wherein the carbon monoxide detector is selected as the preliminary
detector, and the smoke detector or the heat detector as the primary detector.
7. The method of claim 1, wherein the formal notification is issued if the early-warning
notification is issued but the primary detection signal is not greater than the corresponding
threshold, which repetitively happens for several times reaching a predetermined value.
8. An integrated fire alarm system, comprising:
at least two fire detectors of different types for respectively detecting different
physical properties, one of the at least two fire detectors being selected as a preliminary
detector and remaining at least one fire detector as a primary detector;
at least one notification device; and
an integrated controller coupled to the at least two fire detectors and the at least
one notification device;
wherein the integrated controller receives a preliminary detection signal from the
preliminary detector and compares the preliminary detection signal with a predetermined
corresponding threshold, and the integrated controller controls the at least one notification
device to issue an early-warning notification if the preliminary detection signal
is greater than the corresponding threshold;
the integrated controller receives a primary detection signal from the primary detector
after issuing the early-warning notification and compares the primary detection signal
with a predetermined corresponding threshold, and the integrated controller controls
the at least one notification device to issue a formal notification if the primary
detection signal is greater than the corresponding threshold.
9. The system of claim 8, after issuing the formal notification, wherein the integrated
controller further controls the at least one notification device to issue a confirmed
notification, if the preliminary detection signal is continuingly greater than the
corresponding threshold, and the primary detection signal is greater than the corresponding
threshold.
10. The system of claim 9, further comprising a transceiver coupled to the integrated
controller to transfer the early-warning notification, the formal notification or
the confirmed notification.
11. The system of claim 8, wherein the at least one notification device comprises a visual
notification device or an audio notification device.
12. The system of claim 8, wherein the at least two fire detectors comprise a smoke detector,
a carbon monoxide detector and a heat detector.
13. The system of claim 12, wherein the smoke detector is selected as the preliminary
detector, and the carbon monoxide detector or the heat detector as the primary detector.
14. The system of claim 12, wherein the carbon monoxide detector is selected as the preliminary
detector, and the smoke detector or the heat detector as the primary detector.
15. The system of claim 8, wherein the formal notification is issued if the early-warning
notification is issued but the primary detection signal is not greater than the corresponding
threshold, which repetitively happens for several times reaching a predetermined value.
Amended claims in accordance with Rule 137(2) EPC.
1. An integrated fire alarm method (200A), comprising:
providing at least two fire detectors (11, 12, 13) of different types for respectively
detecting different physical properties; (21)
providing at least one notification device (15, 16);
selecting one of the at least two fire detectors as a preliminary detector and remaining
at least one fire detector as a primary detector; (22A)
receiving a preliminary detection signal from the preliminary detector, and comparing
the preliminary detection signal with a predetermined corresponding threshold; (23A)
controlling at least one notification device to issue an early-warning notification
if the preliminary detection signal is greater than the corresponding threshold; (24)
receiving a primary detection signal from the primary detector after issuing the early-warning
notification, and comparing the primary detection signal with a predetermined corresponding
threshold; (25A) and
controlling the at least one notification device to issue a formal notification if
the primary detection signal is greater than the corresponding threshold. (26)
2. The method of claim 1, after issuing the formal notification, further comprising a
step of controlling the at least one notification device to issue a confirmed notification,
if the preliminary detection signal is continuingly greater than the corresponding
threshold, and the primary detection signal is greater than the corresponding threshold.
(27A, 28)
3. The method of claim 2, further comprising a step of transferring the early-warning
notification, the formal notification or the confirmed notification.
4. The method of claim 1, wherein the at least two fire detectors comprise a smoke detector
(11), a carbon monoxide detector (12) and a heat detector (13).
5. The method of claim 4, wherein the smoke detector is selected as the preliminary detector,
and the carbon monoxide detector or the heat detector as the primary detector.
6. The method of claim 4, wherein the carbon monoxide detector is selected as the preliminary
detector, and the smoke detector or the heat detector as the primary detector.
7. The method of claim 1, wherein the formal notification is issued if the early-warning
notification is issued but the primary detection signal is not greater than the corresponding
threshold, which repetitively happens for several times reaching a predetermined value.
(25A)
8. An integrated fire alarm system (100), comprising:
at least two fire detectors (11, 12, 13) of different types for respectively detecting
different physical properties, one of the at least two fire detectors being selected
as a preliminary detector and remaining at least one fire detector as a primary detector;
at least one notification device (15, 16); and
an integrated controller (14) coupled to the at least two fire detectors and the at
least one notification device;
wherein the integrated controller receives a preliminary detection signal from the
preliminary detector and compares the preliminary detection signal with a predetermined
corresponding threshold, and the integrated controller controls the at least one notification
device to issue an early-warning notification if the preliminary detection signal
is greater than the corresponding threshold; (23A, 24)
the integrated controller receives a primary detection signal from the primary detector
after issuing the early-warning notification and compares the primary detection signal
with a predetermined corresponding threshold, and the integrated controller controls
the at least one notification device to issue a formal notification if the primary
detection signal is greater than the corresponding threshold. (25A, 26)
9. The system of claim 8, after issuing the formal notification, wherein the integrated
controller further controls the at least one notification device to issue a confirmed
notification, if the preliminary detection signal is continuingly greater than the
corresponding threshold, and the primary detection signal is greater than the corresponding
threshold. (27A, 28)
10. The system of claim 9, further comprising a transceiver (17) coupled to the integrated
controller to transfer the early-warning notification, the formal notification or
the confirmed notification.
11. The system of claim 8, wherein the at least one notification device comprises a visual
notification device (15) or an audio notification device (16).
12. The system of claim 8, wherein the at least two fire detectors comprise a smoke detector
(11), a carbon monoxide detector (12) and a heat detector (13).
13. The system of claim 12, wherein the smoke detector is selected as the preliminary
detector, and the carbon monoxide detector or the heat detector as the primary detector.
14. The system of claim 12, wherein the carbon monoxide detector is selected as the preliminary
detector, and the smoke detector or the heat detector as the primary detector.
15. The system of claim 8, wherein the formal notification is issued if the early-warning
notification is issued but the primary detection signal is not greater than the corresponding
threshold, which repetitively happens for several times reaching a predetermined value.
(25A)