IP Library Granted Patent US 11,360,488
Granted Patent B2
US 11,360,488 · App. 16/735,774 · Granted Jun 14, 2022

Dynamic relative position reassignment of vehicle in autonomous vehicles ecosystem

Inventors: Eric V. Kline (Pine Island, MN); Sarbajit K. Rakshit (Kolkata, IN)
Assignee: INTERNATIONAL BUSINESS MACHINES CORPORATION
G05D1/0278B60W30/162G01C21/3476G05D1/0223
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Quick Facts
Patent No.
US 11,360,488
App. No.
16/735,774
Granted
Jun 14, 2022
Kind
B2
Abstract

An autonomous vehicle system includes an autonomous vehicle in signal communication with a data server via a communication network. The autonomous vehicle is configured to travel autonomously according to a traveling route. The data server outputs at least one driving command to control the autonomous vehicle based, at least on in part, on a point of interest (POI) included in the traveling route and at least one surrounding vehicle located in a vicinity of the autonomous vehicle.

Claims (42)

1. An autonomous vehicle system comprising:

an electronic data server; and

an autonomous vehicle in signal communication with the data server via a communication network, the autonomous vehicle configured to travel autonomously according to a traveling route that includes a point of interest (POI),

wherein a passenger of the autonomous vehicle inputs a request to re-position the autonomous vehicle with respect to at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle to establish an unobstructed view of the POI, and

wherein the data server outputs at a first driving command to control the autonomous vehicle and at least one second driving command to reposition the at least one surrounding autonomous vehicle with respect to the autonomous vehicle based, in part on, the POI included in the traveling route and the at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle to establish the unobstructed view of the POI with respect to the autonomous vehicle.

2. The autonomous vehicle system of claim 1 , wherein the at least one driving command includes at least one of adjusting a spacing between the autonomous vehicle and the at least one surrounding autonomous vehicle, controlling a speed of the autonomous vehicle, and changing a lane of the autonomous vehicle.

3. The autonomous vehicle system of claim 2 , wherein the data server determines a position of the autonomous vehicle with respect to the at least one surrounding autonomous vehicle and generates the at least one driving command based at least in part on the position to reposition the autonomous vehicle such that the POI is unobstructed from a field of view of the autonomous vehicle.

4. The autonomous vehicle system of claim 2 , wherein the at least one surrounding autonomous vehicle includes a second autonomous vehicle, and wherein the data server generates a first driving command to control the autonomous vehicle and a second driving command to control the second autonomous vehicle such that the POI is unobstructed from a field of view of the autonomous vehicle.

5. The autonomous vehicle system of claim 4 , wherein the autonomous vehicle and the second autonomous vehicle output position data to the data server, and the data server generates the first and second driving commands based on the position data.

6. The autonomous vehicle system of claim 5 , wherein the position data and a location of the POI are based at least on part on global position system (GPS) data corresponding to the autonomous vehicle and the second autonomous vehicle.

7. The autonomous vehicle system of claim 6 , wherein the first and second driving commands re-positions the autonomous vehicle and the second autonomous vehicle with respect to one another such that the POI is unobstructed from a field of view of the autonomous vehicle.

8. The autonomous vehicle system of claim 7 , wherein the autonomous vehicle and the second autonomous vehicle exchange the position data between one another, and wherein the autonomous vehicle autonomously controls its vehicle operations to maintain the re-position.

9. A method of controlling one or more autonomous vehicles operating in an autonomous vehicle system, the method comprising:

establishing data communication between an electronic data server operating in a communication network and an autonomous vehicle;

autonomously operating the autonomous vehicle along a traveling route;

determining a point of interest (POI) included along the traveling route; and

determining at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle;

receiving, from a passenger of the autonomous vehicle, a request to re-position the autonomous vehicle with respect to the at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle to establish an unobstructed view of the POI;

outputting a first driving command to control the autonomous vehicle and the at least one second driving command to reposition the at least one surrounding autonomous vehicle with respect to the autonomous vehicle based in part on the POI and the at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle to establish the unobstructed view of the POI with respect to the autonomous vehicle.

10. The method of claim 9 , wherein outputting the at least one driving command includes commanding the autonomous vehicle to perform at least of adjusting a spacing between the autonomous vehicle and the at least one surrounding autonomous vehicle, controlling a speed of the autonomous vehicle, and changing a lane of the autonomous vehicle.

11. The method of claim 10 , further comprising:

determining a position of the autonomous vehicle with respect to the at least one surrounding autonomous vehicle; and

generating the at least one driving command based at least in part on the position to reposition the autonomous vehicle such that the POI is unobstructed from a field of view of the autonomous vehicle.

12. The method of claim 10 , wherein the at least one surrounding autonomous vehicle includes a second autonomous vehicle, and wherein the method further comprises:

generating, via the data server, a first driving command to control the autonomous vehicle; and

generating, via the data server, a second driving command to control the second autonomous vehicle such that the POI is unobstructed from a field of view of the autonomous vehicle.

13. The method of claim 12 , further comprising:

outputting, via the autonomous vehicle and the second autonomous vehicle, position data to the data server; and

generating, via the data server, the first and second driving commands based on the position data.

14. The method of claim 13 , further comprising determining the position data and a location of the POI based at least on part on global position system (GPS) data corresponding to the autonomous vehicle and the second autonomous vehicle.

15. The method of claim 14 , further comprising, re-positioning the autonomous vehicle and the second autonomous vehicle with respect to one another based on the first and second driving commands such that the POI is unobstructed from a field of view of the autonomous vehicle.

16. The method of claim 15 , further comprising:

exchanging the position data between the autonomous vehicle and the second autonomous vehicle; and

autonomously controlling the autonomous vehicle based on the exchanged position data to maintain the re-position.

17. An autonomous vehicle included an autonomous vehicle system, autonomous vehicle comprising:

a wireless vehicle communication system configured to exchange data with a remotely located electronic data server via a communication network; and

a vehicle control system configured to autonomously drive the autonomous vehicle according to a traveling route that includes a point of interest (POI),

wherein a passenger of the vehicle inputs a request to re-position the autonomous vehicle with respect to at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle to establish an unobstructed view of the POI, and

wherein the data server outputs at a first driving command to control the autonomous vehicle and at least one second driving command to reposition the at least one surrounding autonomous vehicle with respect to the autonomous vehicle based, in part on, the POI included in the traveling route and the at least one surrounding autonomous vehicle located in a vicinity of the autonomous vehicle to establish the unobstructed view of the POI with respect to the autonomous vehicle.

18. The autonomous vehicle of claim 17 , wherein the at least one driving command repositions the autonomous vehicle with respect to the at least one surrounding autonomous vehicle such that the POI is unobstructed from a field of view of the autonomous vehicle.

19. The autonomous vehicle of claim 18 , wherein the data further includes a current position of the autonomous vehicle and a location of the POI with respect to the autonomous vehicle.

20. The autonomous vehicle of claim 19 , wherein the at least one driving command includes at least one of adjusting a spacing between the autonomous vehicle the at least one surrounding autonomous vehicle, controlling a speed of the autonomous vehicle, and changing a lane of the autonomous vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2020
From: KLINE, ERIC V.; RAKSHIT, SARBAJIT K.
To: INTERNATIONAL BUSINESS MACHINES CORPORATION
Reel/Frame 051432/0514 →
Continuity (1)
Related Publication 20210208600A1 · Jul 8, 2021
Cited By (1)
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