IP Library Granted Patent US 9,827,818
Granted Patent B2
US 9,827,818 · App. 14/972,831 · Granted Nov 28, 2017

Multi-stage solution for trailer hitch angle initialization

Inventors: Zheng Hu (Farmington Hills, MI); Erick Michael Lavoie (Dearborn, MI)
Assignee: Ford Global Technologies, LLC
B60D1/30B60R1/00B62D13/06B62D15/027G06K9/00335G06K9/00825G06K9/4604G06K9/52G06K9/6201G06T7/0085G06T7/20G06T7/60H04N7/18B60R2300/806G06T2207/20112G06T2207/30252
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Quick Facts
Patent No.
US 9,827,818
App. No.
14/972,831
Granted
Nov 28, 2017
Kind
B2
Abstract

A system for initializing hitch angle detection is provided herein. An imaging device is configured to capture images of a trailer connected to a vehicle. A controller is configured to select between a plurality of hitch angle detection routines based on at least one of a current driving condition and an availability of a template image of the trailer.

Claims (39)

1. A system for initializing hitch angle detection, comprising:

an imaging device configured to capture images of a trailer connected to a vehicle;

a controller configured to select between a plurality of hitch angle detection routines based on at least one of a current driving condition and an availability of a template image of the trailer;

wherein if the template image is available, the controller selects a first hitch angle detection routine that comprises matching the template image to a search image to determine a hitch angle between the vehicle and the trailer;

wherein if the template image is unavailable and the vehicle and trailer are moving in a straight direction, the controller processes images captured by the imaging device to derive the template image and selects the first hitch angle detection routine.

2. The system of claim 1 , wherein if the template image is unavailable and the vehicle and trailer are not moving in a straight direction, the controller selects a second hitch angle detection routine that comprises:

processing images captured by the imaging device;

deriving an edge map and identifying trailer pixels therein;

locating a centerline of the trailer pixels; and

determining the hitch angle based on an angular position of the centerline relative to a reference line.

3. The system of claim 2 , wherein if the hitch angle between the vehicle and the trailer becomes constant while the second hitch angle detection routine is the currently selected hitch angle detection routine, the controller chooses between two hitch angle detection routines.

4. The system of claim 3 , wherein if the hitch angle is a constant zero value, the controller processes images captured by the imaging device to derive the template image and selects the first hitch angle detection routine.

5. The system of claim 3 , wherein if the hitch angle is a constant non-zero value, the controller selects a third hitch angle detection routine that comprises determining the hitch angle as a function of a trailer length, a wheelbase length, a drawbar length, and a steering angle.

6. The system of claim 5 , wherein if the hitch angle ceases to remain at the constant non-zero value while the third hitch angle detection routine is the currently selected hitch angle detection routine, the controller selects the second hitch angle detection routine.

7. A method of initializing hitch angle detection, comprising the steps of:

using an imaging device to capture images of a trailer connected to a vehicle; and

providing a controller configured to select between a plurality of hitch angle detection routines based on at least one of a current driving condition and an availability of a template image of the trailer;

wherein if the template image is available, the controller selects a first hitch angle detection routine that comprises matching the template image to a search image to determine a hitch angle between the vehicle and the trailer;

wherein if the template image is unavailable and the vehicle and trailer are moving in a straight direction, the controller processes images captured by the imaging device to derive the template image and selects the first hitch angle detection routine.

8. The method of claim 7 , wherein if the template image is unavailable and the vehicle and trailer are not moving in a straight direction, the controller selects a second hitch angle detection routine that comprises:

processing images captured by the imaging device;

deriving an edge map and identifying trailer pixels therein;

locating a centerline of the trailer pixels; and

determining the hitch angle based on an angular position of the centerline relative to a reference line.

9. The method of claim 8 , wherein if the hitch angle between the vehicle and the trailer becomes constant while the second hitch angle detection routine is the currently selected hitch angle detection routine, the controller chooses between two hitch angle detection routines.

10. The method of claim 9 , wherein if the hitch angle is a constant zero value, the controller processes images captured by the imaging device to derive the template image and selects the first hitch angle detection routine.

11. The method of claim 9 , wherein if the hitch angle is a constant non-zero value, the controller selects a third hitch angle detection routine that comprises determining the hitch angle as a function of a trailer length, a wheelbase length, a drawbar length, and a steering angle.

12. The method of claim 11 , wherein if the hitch angle ceases to remain at the constant non-zero value while the third hitch angle detection routine is the currently selected hitch angle detection routine, the controller selects the second hitch angle detection routine.

13. A method of initializing hitch angle detection, comprising the steps of:

using an imaging device to capture images of a trailer connected to a vehicle; and

providing a controller configured to select between a first, second, and third hitch angle detection routine based on at least one of a current driving condition and an availability of a template image of the trailer;

wherein if the template image is available, the controller selects the first hitch angle detection routine that comprises matching the template image to a search image to determine a hitch angle between the vehicle and the trailer; and

wherein if the template image is unavailable and the vehicle and trailer are moving in a straight direction, the controller processes images captured by the imaging device to derive the template image and selects the first hitch angle detection routine.

14. The method of claim 13 , wherein if the template image is unavailable and the vehicle and trailer are not moving in a straight direction, the controller selects the second hitch angle detection routine that comprises:

processing images captured by the imaging device;

deriving an edge map and identifying trailer pixels therein;

locating a centerline of the trailer pixels; and

determining the hitch angle based on an angular position of the centerline relative to a reference line.

15. The method of claim 14 , wherein if the hitch angle between the vehicle and the trailer becomes constant while the second hitch angle detection routine is the currently selected hitch angle detection routine, the controller processes images captured by the imaging device to derive the template image and selects the first hitch angle detection routine if the hitch angle is a constant zero value, otherwise, if the hitch angle is a constant non-zero value, the controller selects the third hitch angle detection routine that comprises determining the hitch angle as a function of a trailer length, a wheelbase length, a drawbar length, and a steering angle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2015
From: HU, ZHENG; LAVOIE, ERICK MICHAEL
To: FORD GLOBAL TECHNOLOGIES, LLC
Reel/Frame 037318/0426 →
Continuity (1)
Related Publication 20170174022A1 · Jun 22, 2017