IP Library › Granted Patent US 11,429,114
Granted Patent B2
US 11,429,114 · App. 16/791,293 · Granted Aug 30, 2022

Implement control of vehicle and implement combination

Inventors: Travis Davis (Moline, IL); Darin Packebush (Moline, IL)
Assignee: DEERE & COMPANY
G05D1/0278A01B69/001A01B69/004A01B69/006G05D1/0219G05D2201/0201
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Quick Facts
Patent No.
US 11,429,114
App. No.
16/791,293
Filed
Feb 14, 2020
Granted
Aug 30, 2022
Kind
B2
Art Unit
3667
USPC
701/50
Abstract

An implement includes a global positioning system (GPS) receiver and an implement control system. The global positioning system receiver is configured to obtain position information for the implement. The implement control system is configured to determine a lateral error for the implement based on the position information, estimate a lateral error for a vehicle relative to the implement, the vehicle being attached to the implement, and steer the vehicle to guide the implement based on at least the lateral error for the implement and the lateral error for the vehicle.

Claims (50)

1. An implement comprising:

a global positioning system receiver configured to obtain position information for the implement;

a perception detection system configured to capture one or more images of an optical target on a vehicle attached to the implement; and

an implement control system configured to

determine a lateral error for the implement based on the position information,

estimate a lateral error for the vehicle relative to the implement based on (i) the lateral error for the implement, (ii) the one or more images of the optical target on the vehicle, and (iii) steering information associated with the vehicle, the steering information received from a vehicle steering detector on the vehicle and the steering information including at least a wheel angle for the vehicle, and

steer the vehicle to guide the implement based on at least the lateral error for the implement and the lateral error for the vehicle.

2. The implement of claim 1 , wherein the perception detection system includes one or more cameras.

3. The implement of claim 1 , wherein the implement control system is configured to

determine a current angle of the vehicle relative to a longitudinal axis of the implement at a control point of the vehicle based on the one or more images of the optical target,

estimate a subsequent angle of the vehicle relative to the longitudinal axis of the implement at the control point based on the current angle and the steering information associated with the vehicle, and

estimate the lateral error for the vehicle relative to the implement based on the subsequent angle of the vehicle and the lateral error for the implement.

4. The implement of claim 3 , wherein the steering information associated with the vehicle includes a wheel angle history and a yaw rate for the vehicle.

5. The implement of claim 1 , wherein the implement control system is configured to

project a desired path for the vehicle; and

steer the vehicle based on the desired path for the vehicle.

6. The implement of claim 5 , wherein the implement control system is configured to steer the vehicle by outputting a request command to a vehicular controller at the vehicle, the request command requesting steering of the vehicle along the desired path.

7. A method for controlling a vehicle and implement combination, the method comprising:

obtaining, by a global positioning system receiver at the implement, position information for the implement;

capturing one or more images of an optical target on the vehicle;

determining a lateral error for the implement based on the position information;

estimating a lateral error for the vehicle relative to the implement based on (i) the lateral error for the implement, (ii) the one or more images of the optical target on the vehicle, and (iii) steering information associated with the vehicle, the steering information received from a vehicle steering detector on the vehicle and the steering information including at least a wheel angle for the vehicle; and

steering the vehicle to guide the implement based on at least the lateral error for the implement and the lateral error for the vehicle.

8. The method of claim 7 , wherein the estimating comprises:

determining a current angle of the vehicle relative to a longitudinal axis of the implement at a control point of the vehicle based on the one or more images of the optical target;

estimating a subsequent angle of the vehicle relative to the longitudinal axis of the implement at the control point based on the current angle and the steering information associated with the vehicle; and

estimating the lateral error for the vehicle relative to the implement based on the subsequent angle of the vehicle and the lateral error for the implement.

9. The method of claim 8 , wherein the steering information associated with the vehicle includes a wheel angle history and a yaw rate for the vehicle.

10. The method of claim 7 , further comprising:

projecting a desired path for the vehicle; and wherein

the steering steers the vehicle based on the desired path for the vehicle.

11. The method of claim 10 , further comprising:

outputting a request command to a vehicular controller at the vehicle, the request command requesting steering of the vehicle along the desired path.

12. A non-transitory computer-readable storage medium storing computer readable instructions that, when executed by one or more processors at an implement, cause the implement to perform a method for controlling a vehicle and implement combination, the method comprising:

obtaining, by a global positioning system receiver at the implement, position information for the implement;

capturing one or more images of an optical target on the vehicle;

determining a lateral error for the implement based on the position information;

estimating a lateral error for the vehicle relative to the implement based on (i) the lateral error for the implement, (ii) the one or more images of the optical target on the vehicle, and (iii) steering information associated with the vehicle, the steering information received from a vehicle steering detector on the vehicle and the steering information including at least a wheel angle for the vehicle; and

steering the vehicle to guide the implement based on at least the lateral error for the implement and the lateral error for the vehicle.

13. The non-transitory computer-readable storage medium of claim 12 , wherein the estimating comprises:

determining a current angle of the vehicle relative to a longitudinal axis of the implement at a control point of the vehicle based on the one or more images of the optical target;

estimating a subsequent angle of the vehicle relative to the longitudinal axis of the implement at the control point based on the current angle and the steering information associated with the vehicle; and

estimating the lateral error for the vehicle relative to the implement based on the subsequent angle of the vehicle and the lateral error for the implement.

14. The non-transitory computer-readable storage medium of claim 13 , wherein the steering information associated with the vehicle includes a wheel angle history and a yaw rate for the vehicle.

15. The non-transitory computer-readable storage medium of claim 12 , wherein the method further comprises:

projecting a desired path for the vehicle; and wherein

the steering steers the vehicle based on the desired path for the vehicle.

16. The non-transitory computer-readable storage medium of claim 15 , wherein the method further comprises:

outputting a request command to a vehicular controller at the vehicle, the request command requesting steering of the vehicle along the desired path.

17. The implement of claim 1 , wherein the implement control system is configured to estimate the lateral error for the vehicle relative to the implement without use of location information from a location determining receiver or a global positioning receiver on the vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2020
From: DAVIS, TRAVIS; PACKEBUSH, DARIN
To: DEERE & COMPANY
Reel/Frame 052056/0637 →
Continuity (1)
Related Publication 20210255639A1 · Aug 19, 2021
Cited By (7)
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