IP Library Granted Patent US 11,189,143
Granted Patent B2
US 11,189,143 · App. 17/103,209 · Granted Nov 30, 2021

Aspiration smoke detection system

Inventors: Miquel Ribalda Galvez (Barcelona, ES); Jose Manuel Munuera Garcia (Barcelona, ES); Ricard Burriel Maurel (Barcelona, ES)
Assignee: CARRIER CORPORATION
G08B17/10G08B21/182
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Quick Facts
Patent No.
US 11,189,143
App. No.
17/103,209
Granted
Nov 30, 2021
Kind
B2
Abstract

An aspiration smoke detection system for detecting the presence of a fire within a region of interest. The aspiration smoke detection system includes a smoke detection unit for detecting the presence of smoke particles suspended in air; and one or more local sensors located remotely from the smoke detection unit for measuring a property of air from the region of interest that is drawn into the aspiration smoke detection system. An inlet piece includes a sensor for use with the aspiration smoke detection system is also provided. A method of detecting a fire using the aspiration smoke detection system and a method of locating a fire using the aspiration smoke detection system are also provided.

Claims (30)

1. An aspiration smoke detection system for detecting the presence of a fire within a region of interest, the aspiration smoke detection system comprising:

a smoke detection unit comprising a smoke detector housed within a sampling chamber for detecting the presence of smoke particles suspended in air within the sampling chamber; and

one or more local sensors located remotely from the smoke detection unit for measuring a property of air from the region of interest that is drawn into the aspiration smoke detection system;

wherein the aspiration smoke detection system is configured to pass air from the region of interest to the sampling chamber of the smoke detection unit via one of the one or more local sensors, and

wherein the aspiration smoke detection system is configured to use the one or more local sensors to detect quick developing fires before a sample of air reaches the sampling chamber of the smoke detection unit.

2. An aspiration smoke detection system according to claim 1 , wherein the smoke detection unit is more sensitive than the one or more local sensors.

3. An aspiration smoke detection system according to claim 1 , wherein the local sensor is for measuring one or more of: the rate of temperature change of the air, the presence of smoke particles suspended in the air, and the presence of carbon dioxide in the air.

4. An aspiration smoke detection system according to claim 1 , wherein the system comprises a controller, wherein the controller is arranged to receive data collected by the smoke detection unit and the one or more local sensors.

5. An aspiration smoke detection system according to claim 4 , wherein the controller is configured to raise an alarm if the concentration of smoke particles suspended in the air measured by the smoke detection unit is above a predetermined threshold value.

6. An aspiration smoke detection system according to claim 4 , wherein the controller is configured to raise an alarm if data from one or more of the local sensors measures a property of the air that is indicative of a fire.

7. An aspiration smoke detection system according to claim 4 , wherein if the data from the smoke detection unit is indicative of a fire being present in the region of interest, the controller is configured to determine the most likely location of a fire within the region of interest based on data collected by the local sensors.

8. An aspiration smoke detection system according to claim 1 , wherein the local sensors are configured to continuously monitor the air drawn into the aspiration smoke detection system from the region of interest.

9. An aspiration smoke detection system according to claim 1 , wherein the local sensors are configured to periodically monitor the air drawn into the aspiration smoke detection system from the region of interest.

10. An aspiration smoke detection system according to claim 1 , comprising one or more inlets for passing air from the region of interest into the smoke detection unit.

11. An aspiration smoke detection system according to claim 10 , wherein the one or more local sensors are each located on, near or in one of the inlets.

12. An aspiration smoke detection system according to claim 10 , wherein the transport time of air from at least one of the inlets to the smoke detection unit is greater than 70 seconds, or greater than 100 seconds.

13. An aspiration smoke detection system according to claim 10 , wherein the distance a sample has to travel between one or more of the inlets and the smoke detection unit is greater than 50 m, or greater than 100 m, or greater than 200 m.

14. A method of detecting a fire within a region of interest using an aspiration smoke detection system, the method comprising:

providing the aspiration smoke detection system of claim 1 ;

passing air from the region of interest to the sampling chamber of the smoke detection unit via one of the one or more local sensors;

using the smoke detector of the smoke detection unit to measure a concentration of smoke particles within the air that has been passed to the sampling chamber of the smoke detection unit;

using the one or more local sensors to measure a property of the air that can be used to indicate the presence of a fire;

determining if the concentration of smoke particles measured by the smoke detector of the smoke detection unit is indicative of a fire within the region of interest; and/or

determining if the measured property of air sensed by the one or more local sensors is indicative of a fire within the region of interest;

wherein the local sensors are used to measure a property of the air before the air reaches the sampling chamber of the smoke detection unit in order to detect quick developing fires before the air reaches the smoke detection unit.

15. A method according to claim 14 , wherein the local sensors are used to continuously monitor the air drawn into the aspiration smoke detection system from the region of interest.

16. A method according to claim 14 , wherein the local sensors are used to periodically monitor the air drawn into the aspiration smoke detection system from the region of interest.

17. A method according to claim 14 , wherein the transport time for the air from at least one of the local sensors to the smoke detection unit is greater than 70 seconds, or greater than 100 seconds.

18. A method of detecting a fire within a region of interest using an aspiration smoke detection system, wherein the aspiration smoke detection system is the aspiration smoke detection system of claim 1 .

19. A method of retrofitting one or more local sensors to an existing aspiration smoke detection system to provide the aspiration smoke detection system of claim 1 .

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2025
From: CARRIER CORPORATION; CARRIER GLOBAL CORPORATION; CARRIER FIRE & SECURITY EMEA; CARRIER FIRE & SECURITY, LLC; CARRIER CANADA CORPORATION; CLIMATE, CONTROLS & SECURITY ARGENTINA S.A.; KIDDE IP HOLDINGS , INC.; KIDDE LTD.; KIDDE PRODUCTS LTD.; CARRIER TRANSICOLD AUSTRIA GMBH; CARRIER TRANSICOLD FRANCE SCS
To: KIDDE FIRE PROTECTION, LLC
Reel/Frame 072829/0172 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2020
From: RIBALDA GALVEZ, MIQUEL; MUNUERA GARCIA, JOSE MANUEL; BURRIEL MAUREL, RICARD
To: UTC FIRE & SECURITY ESPANA SL
Reel/Frame 054515/0879 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2020
From: UTC FIRE & SECURITY ESPANA SL
To: CARRIER CORPORATION
Reel/Frame 054515/0918 →
Cited By (1)
US 12,268,912