IP Library › Granted Patent US 11,724,697
Granted Patent B2
US 11,724,697 · App. 16/560,131 · Granted Aug 15, 2023

Geofenced AI controlled vehicle dynamics

Inventors: Katsumi Nagata (Foster City, CA); Ryan Wiesenberg (Ann Arbor, MI); Christopher Risberg (Flower Mound, TX); Prathap Alvakonda (Frisco, TX)
Assignee: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
B60W30/182B60W10/02B60W10/10B60W10/20G08G1/207H04W4/021B60W2555/20
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Quick Facts
Patent No.
US 11,724,697
App. No.
16/560,131
Granted
Aug 15, 2023
Kind
B2
Abstract

A system and method of geofenced control of a vehicle, includes determining a geographic region within which a vehicle is operating; retrieving a geo-profile corresponding to the determined geographic region within which the vehicle is operating; and applying the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle to conform to driving characteristics of the determined geographic region within which the vehicle is operating.

Claims (34)

1. A method of geofenced control of a vehicle, comprising:

determining a geographic region within which a vehicle is operating;

retrieving a geo-profile corresponding to the determined geographic region within which the vehicle is operating, wherein the geo-profile comprises driving dynamics and is created based on driving styles in the geographic region and vehicle settings associated with the driving dynamics;

determining whether the geo-profile is compatible with one or more vehicle systems within the vehicle; and

applying the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle to conform to driving characteristics of the determined geographic region within which the vehicle is operating, wherein applying the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle comprises applying only those vehicle settings to the vehicle that are determined to be compatible with the one or more vehicle systems within the vehicle.

2. The method of claim 1 , wherein determining whether an available geo-profile corresponding to the determined geographic region is compatible with the vehicle comprises determining whether the vehicle includes vehicle systems that are controllable by the geo-profile corresponding to the determined geographic region.

3. The method of claim 1 , wherein the geo-profile identifies a driving mode of the vehicle, and wherein applying the geo-profile to the vehicle comprises placing the vehicle in the driving mode identified by the geo-profile.

4. The method of claim 1 , wherein applying the geo-profile to the vehicle comprises applying one or more of the vehicle settings to the vehicle.

5. The method of claim 1 , further comprising gathering vehicle operating characteristics data from a plurality of other vehicles operating in a geographic region and constructing a geo-profile based on the vehicle operating characteristics data for the geographic region.

6. The method of claim 1 , further comprising gathering vehicle operating characteristics data from a plurality of infrastructure elements in a geographic region and constructing a geo-profile based on the vehicle operating characteristics data for the geographic region.

7. The method of claim 1 , wherein the geo-profile is stored external to the vehicle and retrieving the geo-profile corresponding to the determined geographic comprises receiving at the vehicle the geo-profile from an external storage location.

8. The method of claim 1 , wherein a profile system external to the vehicle receives the position information to determine the geographic region within which the vehicle is operating, identifies a geo-profile corresponding to the determined geographic region, retrieves the geo-profile corresponding to the determined geographic region and since the retrieved geo-profile to the vehicle.

9. The method of claim 1 , wherein the vehicle retrieves the geo-profile corresponding to the determined geographic region from a storage location on board the vehicle.

10. A non-transitory machine-readable medium having instructions stored therein, which when executed by a processor, cause the processor to perform operations, the operations comprising:

determining a geographic region within which a vehicle is operating;

retrieving a geo-profile corresponding to the determined geographic region within which the vehicle is operating, wherein the geo-profile comprises driving dynamics and is created based on driving styles in the geographic region and vehicle settings associated with the driving dynamics;

determining whether the geo-profile is compatible with one or more vehicle systems within the vehicle; and

applying the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle to conform to driving characteristics of the determined geographic region within which the vehicle is operating, wherein applying the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle comprises applying only those vehicle settings to the vehicle that are determined to be compatible with the one or more vehicle systems within the vehicle.

11. The machine-readable medium of claim 10 , wherein determining whether an available geo-profile corresponding to the determined geographic region is compatible with the vehicle comprises determining whether the vehicle includes vehicle systems that are controllable by the geo-profile corresponding to the determined geographic region.

12. The machine-readable medium of claim 10 , wherein the geo-profile identifies a driving mode of the vehicle, and wherein applying the geo-profile to the vehicle comprises placing the vehicle in the driving mode identified by the geo-profile.

13. The machine-readable medium of claim 10 , wherein applying the geo-profile to the vehicle comprises applying one or more of those vehicle settings to the vehicle.

14. The machine-readable medium of claim 10 , further comprising gathering vehicle operating characteristics data from a plurality of other vehicles operating in a geographic region and constructing a geo-profile based on the vehicle operating characteristics data for the geographic region.

15. The machine-readable medium of claim 10 , further comprising gathering vehicle operating characteristics data from a plurality of infrastructure elements in a geographic region and constructing a geo-profile based on the vehicle operating characteristics data for the geographic region.

16. The machine-readable medium of claim 10 , wherein the geo-profile is stored external to the vehicle and retrieving the geo-profile corresponding to the determined geographic comprises receiving at the vehicle the geo-profile from an external storage location.

17. The machine-readable medium of claim 10 , wherein a profile system external to the vehicle receives the position information to determine the geographic region within which the vehicle is operating, identifies a geo-profile corresponding to the determined geographic region, retrieves the geo-profile corresponding to the determined geographic region and since the retrieved geo-profile to the vehicle.

18. The machine-readable medium of claim 10 , wherein the vehicle retrieves the geo-profile corresponding to the determined geographic region from a storage location on board the vehicle.

19. A vehicle control system, comprising:

a position determination system to determine a geographic region within which a vehicle is operating;

a driving mode circuit to locate a geo-profile corresponding to the determined geographic region, wherein the geo-profile comprises driving dynamics and is created based on driving styles in the geographic region and vehicle settings associated with the driving dynamics, determine whether the geo-profile is compatible with one or more vehicle systems within the vehicle, and retrieve a geo-profile corresponding to the determined geographic region within which the vehicle is operating; and

wherein the driving mode circuit is further configured to apply the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle to conform to driving characteristics of the determined geographic region within which the vehicle is operating, wherein applying the retrieved geo-profile to the vehicle to alter the driving dynamics of the vehicle comprises applying only those vehicle settings to the vehicle that are determined to be compatible with the one or more vehicle systems within the vehicle.

20. The vehicle control system of claim 19 , wherein determining whether an available geo-profile corresponding to the determined geographic region is compatible with the vehicle comprises determining whether the vehicle includes vehicle systems that are controllable by the geo-profile corresponding to the determined geographic region.

21. The vehicle control system of claim 19 , wherein the geo-profile identifies a driving mode of the vehicle, and wherein applying the geo-profile to the vehicle comprises placing the vehicle in the driving mode identified by the geo-profile.

22. The vehicle control system of claim 19 , wherein applying the geo-profile to the vehicle comprises applying one or more of those vehicle settings to the vehicle.

23. The vehicle control system of claim 19 , further comprising a profile system gathering vehicle operating characteristics data from a plurality of other vehicles operating in a geographic region and constructing a geo-profile based on the vehicle operating characteristics data for the geographic region.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE SECOND INVENTOR'S NAME PREVIOUSLY RECORDED ON REEL 050264 FRAME 0150. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 8, 2019
From: NAGATA, KATSUMI; WIESENBERG, RYAN; RISBERG, CHRISTOPHER; ALVAKONDA, PRATHAP
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 051943/0541 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2019
From: NAGATA, KATSUMI; WEISENBERG, RYAN; RISBERG, CHRISTOPHER; ALVAKONDA, PRATHAP
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 050264/0150 →
Continuity (1)
Related Publication 20210061279A1 · Mar 4, 2021
Cited By (1)
US 12,485,766