IP Library Granted Patent US 11,763,653
Granted Patent B2
US 11,763,653 · App. 17/588,828 · Granted Sep 19, 2023

Proximity-based personnel safety system and method

Inventors: Paul Johnson (Houston, TX); Travis McGuire (Houston, TX)
Assignee: TRANSOCEAN SEDCO FOREX VENTURES LIMITED
G08B21/02G01S17/86G01S17/93G06V40/10H04W4/021
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Quick Facts
Patent No.
US 11,763,653
App. No.
17/588,828
Granted
Sep 19, 2023
Kind
B2
Abstract

A method includes receiving first position data from at least one of a TOF sensor or a LIDAR. The first position data is representative of a position of a human within a hazardous environment. The method further includes receiving second position data associated with a plurality of wearable sensors associated with a plurality of personnel. The method further includes comparing the first position data to the second position data to identify a match between the first position data and the second position data. The method further includes sensing a signal to an alert device associated with the hazardous environment such that the alert device issues an alert in response to the first position data failings to match the second position data.

Claims (30)

1. A non-transitory processor-readable medium storing code representing instructions to be executed by a processor, the code comprising code to cause the processor to:

receive first position data associated with a plurality of wearable sensors associated with a plurality of personnel, the position data being representative of a position of the personnel within a hazardous environment;

define a virtual zone associated with a movable machine within the hazardous environment and based on an operation associated with the movable machine, the virtual zone being associated with second position data, a size of the virtual zone being defined at least based on a velocity associated with the movable machine and on dimensions of the movable machine;

compare the first position data to the second position data to identify personnel from the plurality of personnel within the virtual zone; and

at least one of send a signal to (1) an alert device associated with the hazardous environment such that the alert device issues an alert, or (2) the control system instructing the control system to alter the motion of the movable machine, based on the identification of personnel from the plurality of personnel within the virtual zone.

2. The non-transitory processor-readable medium of claim 1 , wherein altering the motion of the movable machine includes stopping the machine, changing a direction of movement of the machine, or changing a speed of the machine.

3. The non-transitory processor-readable medium of claim 1 , wherein the alert device is being worn by the human.

4. The non-transitory processor-readable medium of claim 1 , wherein the second position data is generated by a sensor collocated with the movable machine.

5. The non-transitory processor-readable medium of claim 1 , wherein the second position data is configured to change in real-time based on at least on a planned or occurring operation associated with the movable machine.

6. The non-transitory processor-readable medium of claim 1 , wherein the alert is at least two of a visual alert, an audible alert, or a haptic alert.

7. A method, comprising:

receiving first position data associated with a plurality of wearable sensors associated with a plurality of personnel, the position data being representative of a positions of the personnel within a hazardous environment;

defining, in real-time, a virtual zone associated with a movable machine based on native data generated by the movable machine, a size of the virtual zone being defined at least based on a velocity associated with the movable machine and on dimensions of the movable machine;

comparing the first position data to second position data that is representative of the virtual zone to detect that a personnel from the plurality of personnel is within the virtual zone; and

at least one of sending a signal to (1) an alert device associated with the hazardous environment such that the alert device issues an alert, or (2) the movable machine or a control system that is configured to control the movable machine to alter the motion of the movable machine, in response the detection that the personnel is within the virtual zone.

8. The method of claim 7 , wherein the at least one of sending the signal to the movable machine or the control system includes sending the signal to the movable machine or the control system based on the movable machine having been commanded to move when the personnel from the plurality of personnel is within the virtual zone.

9. The method of claim 7 , wherein altering the motion of the movable machine includes stopping the machine, changing a direction of movement of the machine, or changing a speed of the machine.

10. The method of claim 7 , wherein the alert device is being worn by the personnel from the plurality of personnel.

11. The method of claim 7 , wherein the second position data is configured to change in real-time based on at least one of movement or trajectory of the movable machine.

12. The method of claim 7 , wherein the alert is at least two of a visual alert, an audible alert, or a haptic alert.

13. A non-transitory processor-readable medium storing code representing instructions to be executed by a processor, the code comprising code to cause the processor to:

receive first position data associated with a plurality of wearable sensors associated with a plurality of personnel, the first position data being representative of positions of the personnel within a hazardous environment;

compare the first position data to the second position data associated with a virtual zone within the hazardous environment to determine if the plurality of personnel is within the virtual zone, the virtual zone being associated with an area in the hazardous environment separate from an area in which a movable machine is configured to operate, a size of the virtual zone being defined at least based on a velocity associated with the movable machine and on dimensions of the movable machine; and

at least one of send a signal to (1) an alert device associated with the hazardous environment such that the alert device issues an alert, or (2) a control system instructing the control system to limit motion of the movable machine, in response to determination that a personnel from the plurality of personnel is outside the virtual zone.

14. The non-transitory processor-readable medium of claim 13 , wherein the alert device is being worn by at least one personnel from the plurality of personnel.

15. The non-transitory processor-readable medium of claim 13 , wherein the second position data is generated by a sensor collocated with the movable machine.

16. The non-transitory processor-readable medium of claim 13 , wherein the second position data is configured to change in real-time based on at least one of planned or actual movement or trajectory of the movable machine.

17. The non-transitory processor-readable medium of claim 13 , wherein the alert is at least two of a visual alert, an audible alert, or a haptic alert.

18. The non-transitory processor-readable medium of claim 13 , wherein the first position data includes coordinates in three dimensions and the second position data includes coordinates in three dimensions.

19. The non-transitory processor-readable medium of claim 13 , wherein the virtual zone is a virtual safe zone defined within the hazardous environment to represent an area in which the personnel are safe from contact with the movable machine.

Assignments (2)
CHANGE OF ADDRESS Recorded Dec 20, 2024
From: TRANSOCEAN SEDCO FOREX VENTURES LIMITED
To: TRANSOCEAN SEDCO FOREX VENTURES LIMITED
Reel/Frame 069868/0658 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2022
From: JOHNSON, PAUL; MCGUIRE, TRAVIS
To: TRANSOCEAN SEDCO FOREX VENTURES LIMITED
Reel/Frame 058839/0707 →
Continuity (4)
Continuation 17114892 · Dec 8, 2020
Continuation 16689759 · Nov 20, 2019
Provisional Application 62769790 · Nov 20, 2018
Related Publication 20220223022A1 · Jul 14, 2022
Cited By (1)
US 12,470,093