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"Method Of Controlling An Autonomous Vehicle And A Collision Avoidance Device Thereof"

Abstract: Method of controlling an autonomous vehicle and a collision avoidance device thereof are disclosed. The method includes gathering obstacle information associated with an obstacle around a current navigation path of the autonomous vehicle and vehicle information associated with the autonomous vehicle. The method further includes determining a relative velocity and a collision distance between the obstacle and the autonomous vehicle and an obstacle state of the obstacle based on an analysis of the obstacle information and the vehicle information. The method includes computing a collision factor based on the relative velocity and the obstacle state. When the collision factor is above a collision threshold, the method further includes stopping the autonomous vehicle before exhausting the collision distance, when at least one alternate navigation path is not available and modifying the current navigation path of the autonomous vehicle, when the at least one alternate navigation path is available. Fig 5A

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Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
13 March 2017
Publication Number
37/2018
Publication Type
INA
Invention Field
ELECTRONICS
Status
Email
ipo@knspartners.com
Parent Application
Patent Number
Legal Status
Grant Date
2024-01-04
Renewal Date

Applicants

WIPRO LIMITED
Doddakannelli, Sarjapur Road, Bangalore 560035, Karnataka, India.

Inventors

1. SHYAM SUNDAR PAL
Flat No.14, Block: L/J, Kustia Govt. Housing Estate, Picnic Garden Road, Kolkata 700039, West Bengal, India.

Specification

Claims:WE CLAIM
1. A method of controlling an autonomous vehicle, the method comprising:
gathering, by a collision avoidance device, obstacle information associated with an obstacle around a current navigation path of the autonomous vehicle and vehicle information associated with the autonomous vehicle;
determining, by the collision avoidance device, a relative velocity and a collision distance between the obstacle and the autonomous vehicle and an obstacle state of the obstacle based on an analysis of the obstacle information and the vehicle information;
computing, by the collision avoidance device, a collision factor based on the relative velocity and the obstacle state;
stopping the autonomous vehicle, by the collision avoidance device, before exhausting the collision distance, when the collision factor is above a collision threshold and at least one alternate navigation path is not available; and
modifying, by the collision avoidance device, the current navigation path of the autonomous vehicle, when the collision factor is above the collision threshold and the at least one alternate navigation path is available.
2. The method of claim 1 further comprising instructing the autonomous vehicle to pass over the obstacle, when the collision factor is less than or equal to the collision threshold.
3. The method of claim 2, wherein instructing the autonomous vehicle to pass over the obstacle comprises determining a modification in current velocity of the autonomous vehicle relative to the obstacle based on the analysis of the vehicle information, wherein the modification in the current velocity comprises one of acceleration or deceleration.
4. The method of claim 3 further comprising determining future velocity of the autonomous vehicle after the pass over based on the collision distance, the current velocity, and the modification in the current velocity.
5. The method of claim 1 further comprising determining total number of obstacles within surrounding environment of the autonomous vehicle.
6. The method of claim 1, wherein the obstacle is one of a vehicle, debris, a permanent structure, a tree, a human or an accident site.
7. The method of claim 1, wherein the obstacle information comprises at least one of location of the obstacle, velocity of the obstacle, size of the obstacle, orientation of the obstacle, direction of movement of the obstacle, shape dynamicity of the obstacle, or material of the obstacle.
8. The method of claim 1, wherein the vehicle information comprises at least one of size and shape of the autonomous vehicle, current loaded weight of the autonomous vehicle, tire pressure, tire condition, age of the autonomous vehicle, or brake condition.
9. The method of claim 1, wherein stopping the autonomous vehicle comprises determining a vehicle deceleration based on the relative velocity and the collision distance, the vehicle deceleration enabling the autonomous vehicle to stop before exhausting the collision distance.
10. The method of claim 1 further comprising determining availability of the at least one navigation path for the autonomous vehicle based on the vehicle information, location of a plurality of additional obstacles that exclude the obstacle, and the obstacle information associated with each of the plurality of additional obstacles.
11. A collision avoidance device for controlling an autonomous vehicle, the collision avoidance device comprising:
a processor; and
a memory communicatively coupled to the processor, the at least one first camera, and the at least one second camera, wherein the memory stores processor instructions, which, on execution, causes the processor to:
gather obstacle information associated with an obstacle around a current navigation path of the autonomous vehicle and vehicle information associated with the autonomous vehicle;
determine a relative velocity and a collision distance between the obstacle and the autonomous vehicle and an obstacle state of the obstacle based on an analysis of the obstacle information and the vehicle information;
compute a collision factor based on the relative velocity and the obstacle state;
stop the autonomous vehicle before exhausting the collision distance, when the collision factor is above a collision threshold and at least one alternate navigation path is not available; and
modify the current navigation path of the autonomous vehicle, when the collision factor is above the collision threshold and the at least one alternate navigation path is available.
12. The collision avoidance device of claim 11, wherein the processor instructions further cause the processor to instruct the autonomous vehicle to pass over the obstacle, when the collision factor is less than or equal to the collision threshold.
13. The collision avoidance device of claim 12, wherein to instructing the autonomous vehicle to pass over the obstacle, the processor instructions further cause the processor to determine a modification in current velocity of the autonomous vehicle relative to the obstacle based on the analysis of the vehicle information, wherein the modification in the current velocity comprises one of acceleration or deceleration.
14. The collision avoidance device of claim 13, wherein the processor instructions further cause the processor to determine future velocity of the autonomous vehicle after the pass over based on the collision distance, the current velocity, and the modification in the current velocity.
15. The method of claim 1, wherein the obstacle is one of a vehicle, debris, a permanent structure, a tree, a human or an accident site.
16. The collision avoidance device of claim 11, wherein the obstacle information comprises at least one of location of the obstacle, velocity of the obstacle, size of the obstacle, orientation of the obstacle, direction of movement of the obstacle, shape dynamicity of the obstacle, or material of the obstacle.
17. The collision avoidance device of claim 11, wherein the vehicle information comprises at least one of size and shape of the autonomous vehicle, current loaded weight of the autonomous vehicle, tire pressure, tire condition, age of the autonomous vehicle, or brake condition.
18. The collision avoidance device of claim 1, wherein to stop the autonomous vehicle, the processor instructions further cause the processor to determine a vehicle deceleration based on the relative velocity and the collision distance, the vehicle deceleration enabling the autonomous vehicle to stop before exhausting the collision distance.

19. The collision avoidance device of claim 11, wherein the processor instructions further cause the processor to determine availability of the at least one navigation path for the autonomous vehicle based on the vehicle information, location of a plurality of additional obstacles that exclude the obstacle, and the obstacle information associated with each of the plurality of additional obstacles.

Documents

Application Documents

# Name Date
1 201741008652-IntimationOfGrant04-01-2024.pdf 2024-01-04
1 Power of Attorney [13-03-2017(online)].pdf 2017-03-13
2 201741008652-PatentCertificate04-01-2024.pdf 2024-01-04
2 Form 5 [13-03-2017(online)].pdf 2017-03-13
3 Form 3 [13-03-2017(online)].pdf 2017-03-13
3 201741008652-Written submissions and relevant documents [02-01-2024(online)].pdf 2024-01-02
4 Form 18 [13-03-2017(online)].pdf_602.pdf 2017-03-13
4 201741008652-FORM-26 [19-12-2023(online)].pdf 2023-12-19
5 Form 18 [13-03-2017(online)].pdf 2017-03-13
5 201741008652-AMENDED DOCUMENTS [30-11-2023(online)].pdf 2023-11-30
6 Form 1 [13-03-2017(online)].pdf 2017-03-13
6 201741008652-Correspondence to notify the Controller [30-11-2023(online)].pdf 2023-11-30
7 Drawing [13-03-2017(online)].pdf 2017-03-13
7 201741008652-FORM 13 [30-11-2023(online)].pdf 2023-11-30
8 Description(Complete) [13-03-2017(online)].pdf_601.pdf 2017-03-13
8 201741008652-POA [30-11-2023(online)].pdf 2023-11-30
9 201741008652-US(14)-HearingNotice-(HearingDate-19-12-2023).pdf 2023-11-09
9 Description(Complete) [13-03-2017(online)].pdf 2017-03-13
10 201741008652-FER_SER_REPLY [02-09-2020(online)].pdf 2020-09-02
10 REQUEST FOR CERTIFIED COPY [16-03-2017(online)].pdf 2017-03-16
11 201741008652-FORM 3 [02-09-2020(online)].pdf 2020-09-02
11 PROOF OF RIGHT [16-06-2017(online)].pdf 2017-06-16
12 201741008652-Information under section 8(2) [02-09-2020(online)].pdf 2020-09-02
12 Correspondence by Agent_Form 1_21-06-2017.pdf 2017-06-21
13 201741008652-PETITION UNDER RULE 137 [02-09-2020(online)].pdf 2020-09-02
13 abstract 201741008652.jpg 2017-06-23
14 201741008652-FER.pdf 2020-03-02
14 REQUEST FOR CERTIFIED COPY [06-07-2017(online)].pdf 2017-07-06
15 201741008652-FER.pdf 2020-03-02
15 REQUEST FOR CERTIFIED COPY [06-07-2017(online)].pdf 2017-07-06
16 201741008652-PETITION UNDER RULE 137 [02-09-2020(online)].pdf 2020-09-02
16 abstract 201741008652.jpg 2017-06-23
17 Correspondence by Agent_Form 1_21-06-2017.pdf 2017-06-21
17 201741008652-Information under section 8(2) [02-09-2020(online)].pdf 2020-09-02
18 201741008652-FORM 3 [02-09-2020(online)].pdf 2020-09-02
18 PROOF OF RIGHT [16-06-2017(online)].pdf 2017-06-16
19 201741008652-FER_SER_REPLY [02-09-2020(online)].pdf 2020-09-02
19 REQUEST FOR CERTIFIED COPY [16-03-2017(online)].pdf 2017-03-16
20 201741008652-US(14)-HearingNotice-(HearingDate-19-12-2023).pdf 2023-11-09
20 Description(Complete) [13-03-2017(online)].pdf 2017-03-13
21 201741008652-POA [30-11-2023(online)].pdf 2023-11-30
21 Description(Complete) [13-03-2017(online)].pdf_601.pdf 2017-03-13
22 201741008652-FORM 13 [30-11-2023(online)].pdf 2023-11-30
22 Drawing [13-03-2017(online)].pdf 2017-03-13
23 201741008652-Correspondence to notify the Controller [30-11-2023(online)].pdf 2023-11-30
23 Form 1 [13-03-2017(online)].pdf 2017-03-13
24 201741008652-AMENDED DOCUMENTS [30-11-2023(online)].pdf 2023-11-30
24 Form 18 [13-03-2017(online)].pdf 2017-03-13
25 Form 18 [13-03-2017(online)].pdf_602.pdf 2017-03-13
25 201741008652-FORM-26 [19-12-2023(online)].pdf 2023-12-19
26 Form 3 [13-03-2017(online)].pdf 2017-03-13
26 201741008652-Written submissions and relevant documents [02-01-2024(online)].pdf 2024-01-02
27 Form 5 [13-03-2017(online)].pdf 2017-03-13
27 201741008652-PatentCertificate04-01-2024.pdf 2024-01-04
28 Power of Attorney [13-03-2017(online)].pdf 2017-03-13
28 201741008652-IntimationOfGrant04-01-2024.pdf 2024-01-04

Search Strategy

1 2020-02-1117-21-28_12-02-2020.pdf

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