IP Library › Granted Patent US 11,108,995
Granted Patent B2
US 11,108,995 · App. 16/565,845 · Granted Aug 31, 2021

System and method for gas detection

Inventor: Richard Alexander Wilson, Jr. (Friendswood, TX)
Assignee: DRAEGER MEDICAL SYSTEMS, INC.
H04N7/183G01N33/0063G06K9/00771H04N5/272H04N7/188
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Quick Facts
Patent No.
US 11,108,995
App. No.
16/565,845
Granted
Aug 31, 2021
Kind
B2
Abstract

A method for gas detection including monitoring a concentration of a gas measured by a gas detection device to determine whether or not the concentration of the gas exceeds a threshold, when the concentration of the gas is determined to exceed the threshold, obtaining an image from a camera, the image capturing an area in proximity to the gas detection device at a time when the concentration of the gas is determined to exceed the threshold, annotating the obtained image to overlay a value of the concentration of the gas that exceeds the threshold on the captured area in proximity to the gas detection device, and transmitting the augmented image.

Claims (64)

1. A method for gas detection performed using a gas detection device and a camera capable of capturing an image, the method comprising:

monitoring concentrations of one or more gases measured by the gas detection device to determine whether or not the concentration of one of the monitored gases exceeds a threshold;

when the concentration of the one of the monitored gases is determined to exceed the threshold, obtaining the image from the camera, the image capturing an area in proximity to the gas detection device at a time when the concentration of the one of the monitored gases is determined to exceed the threshold;

augmenting the obtained image by overlaying on the image one or more numerical values of the concentration of the one of the monitored gases that exceeds the threshold on the captured area in proximity to the gas detection device, at the time when the concentration of the one of the monitored gases was determined to exceed the threshold; and

transmitting the augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases from the time when the concentration of the one of the monitored gases was determined to exceed the threshold.

2. The method of claim 1 , wherein in the monitoring, the concentrations of the one or more gases measured by the gas detection device are continuously monitored to determine whether or not the concentration of the one of the monitored gases exceeds the threshold.

3. The method of claim 1 , wherein in the transmitting, the augmented image is transmitted via a predetermined messaging technique to a predetermined party.

4. The method of claim 1 , further comprising:

performing network discovery searching of a network to discover the gas detection device and the camera, the gas detection device and the camera being connected to the network; and

logically associating the camera with the gas detection device such that when the concentration the one of the monitored gases determined to exceed the threshold, the camera captures the image.

5. The method of claim 4 , wherein the gas detection device and the camera are wirelessly connected to the network.

6. The method of claim 1 , further comprising performing object recognition on the augmented image to determine whether or not the concentration of the one of the monitored gases determined to exceed the threshold is caused by a triggering event which is not a cause for an alarm.

7. The method of claim 1 , wherein the camera is integrated with the gas detection device.

8. A system for gas detection, the system comprising:

a gas detection device capable of measuring concentrations of one or more gases and wirelessly transmitting the concentrations of the one or more gases;

a camera capable of capturing an image of an area in proximity to the gas detection device and wirelessly transmitting the image; and

a computer that is wirelessly connected to the gas detection device to receive the concentrations of the one or more gases, and wirelessly connected to the camera to receive the image of the area in proximity to the gas detection device, wherein:

the computer is configured to monitor the concentrations of the one or more gases received from the gas detection device to determine whether or not the concentration of one of the monitored gases exceeds a threshold, and

when the concentration of the one of the monitored gases is determined to exceed the threshold, the computer is configured to

(i) obtain the image from the camera, the image capturing the area in proximity to the gas detection device at a time when the concentration of one of the monitored gases is determined to exceed the threshold,

(ii) augment the obtained image by overlaying on the image one or more numerical values of the concentration of the one of the monitored gases that exceeds the threshold on the captured area in proximity to the gas detection device, at the time when the concentration of the one of the monitored gases was determined to exceed the threshold, and

(iii) transmit the augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases from the time when the concentration of the one of the monitored gases was determined to exceed the threshold.

9. The system of claim 8 , wherein the computer is configured to continuously monitor the concentrations of the one or more gases received from the gas detection device to determine whether or not the concentration of the one of the one of the monitored gases exceeds the threshold.

10. The system of claim 8 , wherein the computer is configured to transmit the augmented image via a predetermined messaging technique to a predetermined party.

11. The system of claim 8 ,

wherein to become wirelessly connected to the gas detection device and the camera, the computer is configured to perform network discovery searching of a network to discover the gas detection device and the camera, the gas detection device and the camera being connected to the network, and

wherein after discovering the gas detection device and the camera, the computer is configured to logically associate the camera with the gas detection device such that when the computer determines that the concentration of the one of the monitored gases exceeds the threshold, the computer obtains the image from the camera.

12. The system of claim 11 , wherein the gas detection device and the camera are wirelessly connected to the network.

13. The system of claim 8 , wherein the computer is configured to perform object recognition on the augmented image to determine whether or not the concentration of the one of the monitored gases determined to exceed the threshold is caused by a triggering event which is not a cause for an alarm.

14. The system of claim 8 , wherein the camera is integrated with the gas detection device.

15. A method for gas monitoring, the method comprising:

displaying a map image of a worksite, the map image including (i) a first icon representing a gas detection device capable of measuring concentrations of one or more gases and (ii) a second icon representing a camera capable of capturing an image of an area in proximity to the gas detection device;

obtaining the image from the camera;

monitoring the concentrations of the one or more gases measured by the gas detection device to determine whether or not the concentration of one of the monitored gases exceeds a threshold;

augmenting the obtained image by overlaying on the image one or more numerical values of the concentration of the one of the monitored gases at a time when the image is obtained from the camera on the captured area in proximity to the gas detection device; and

displaying the augmented image to be the least partially overlapped with the displayed map image;

when the concentration of the one or the monitored gases is determined to exceed the threshold, altering a characteristic of the displayed augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases to indicate that the concentration of the one of the monitored gases is determined to exceed the threshold, at the time when the concentration of the one of the monitored gases was determined to exceed the threshold; and

transmitting the augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases from the time when the concentration of the one of the monitored gases was determined to exceed the threshold.

16. The method of claim 15 , wherein in the monitoring, the concentrations of the one or more gases measured by the gas detection device are continuously monitored to determine whether or not the concentration of the one of the monitored gases exceeds the threshold.

17. The method of claim 15 , wherein in the transmitting, the augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases is transmitted via a predetermined messaging technique to a predetermined party.

18. The method of claim 15 , further comprising:

performing network discovery searching of a network to discover the gas detection device and the camera, the gas detection device and the camera being connected to the network; and

logically associating the camera with the gas detection device such that when the concentration of the one of the monitored gases is determined to exceed the threshold, the camera captures the image.

19. The method of claim 18 , wherein the gas detection device and the camera are wirelessly connected to the network.

20. The method of claim 15 , further comprising performing object recognition on the augmented image to determine whether or not the concentration of the one of the monitored gases determined to exceed the threshold is caused by a triggering event which is not a cause for an alarm.

21. The method of claim 15 , wherein the camera is integrated with the gas detection device.

22. A system for gas monitoring, the system comprising:

a gas detection device capable of measuring concentrations of one or more gases and wirelessly transmitting the concentrations of the one or more gases;

a camera capable of capturing an image of an area in proximity to the gas detection device and wirelessly transmitting the image; and

a computer that is wirelessly connected to the gas detection device to receive the concentrations of the one or more gases, and wirelessly connected to the camera to obtain the image of the area in proximity to the gas detection device, wherein the computer is configured to:

display, on a display, a map image of a worksite, the map image including (i) a first icon representing the gas detection device and (ii) a second icon representing the camera,

monitoring the concentrations of the one or more gases received from the gas detection device to determine whether or not the concentration of one of the monitored gases exceeds a threshold,

augment the obtained image by overlaying on the image one or more numerical values of the concentration of the one of the monitored gases at a time when the image is obtained from the camera on the captured area in proximity to the gas detection device,

display, on the display, the augmented image to be at least partially overlapped with the displayed map image,

when the concentration of the one of the monitored gases is determined to exceed the threshold, alter a characteristic of the displayed augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases to indicate that the concentration of the one of the monitored gases is determined to exceed the threshold, at the time when the concentration of the one of the monitored gases was determined to exceed the threshold, and

transmit the augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases from the time when the concentration of the one of the monitored gases was determined to exceed the threshold.

23. The system of claim 22 , wherein the computer is configured to continuously monitor the concentrations of the one or more gases received from the gas detection device to determine whether or not the concentration of the one of the monitored gases exceeds the threshold.

24. The system of claim 22 , wherein the computer is configured to transmit the augmented image overlaid with the one or more numerical values of the concentration of the one of the monitored gases via a predetermined messaging technique to a predetermined party.

25. The system of claim 22 ,

wherein to become wirelessly connected to the gas detection device and the camera, the computer is configured to perform network discovery searching of a network to discover the gas detection device and the camera, the gas detection device and the camera being connected to the network, and

wherein after discovering the gas detection device and the camera, the computer is configured to logically associate the camera with the gas detection device such that when the computer determines that the concentration of the one of the monitored gases exceeds the threshold, the computer obtains the image from the camera.

26. The system of claim 25 , wherein the gas detection device and the camera are wirelessly connected to the network.

27. The system of claim 22 , wherein the computer is configured to perform object recognition on the augmented image to determine whether or not the concentration of the one of the monitored gases determined to exceed the threshold is caused by a triggering event which is not a cause for an alarm.

28. The system of claim 22 , wherein the camera is integrated with the gas detection device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2020
From: WILSON, RICHARD ALEXANDER, JR
To: DRAEGER MEDICAL SYSTEMS, INC.
Reel/Frame 051406/0252 →
Continuity (2)
Provisional Application 62729609 · Sep 11, 2018
Related Publication 20200084421A1 · Mar 12, 2020
Cited By (1)
US 12,663,366