IP Library Granted Patent US 8,063,759
Granted Patent B2
US 8,063,759 · App. 11/810,164 · Granted Nov 22, 2011

Vehicle vision system

Assignee: Donnelly Corporation
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Quick Facts
Patent No.
US 8,063,759
App. No.
11/810,164
Granted
Nov 22, 2011
Kind
B2
Abstract

A vehicular vision system includes at least one imaging sensor for sensing images of objects in a forward field of view of the imaging sensor. The imaging system includes a control responsive to an output of the imaging sensor. The control modulates at least one headlamp of the vehicle in response to the output of the imaging sensor. The control may process an output of the imaging sensor to identify a headlamp or taillight of another vehicle in the forward field of view of the at least one imaging sensor and to determine a distance between the controlled vehicle and the identified headlamp or taillight of another vehicle. The control may modulate the at least one headlamp of the vehicle in response to the image processing.

Claims (29)

1. A vision system for a vehicle, said vision system comprising:

at least one imaging sensor having a forward field of view with respect to a direction of travel of the vehicle, said at least one imaging sensor comprising a two-dimensional array of photosensing elements, said at least one imaging sensor sensing images of objects in said forward field of view;

a control responsive to an output of said at least one imaging sensor, said control modulating at least one headlamp of the vehicle in response to said output of said at least one imaging sensor;

wherein said control processes said output of said at least one imaging sensor both (a) to identify a headlamp or taillight of another vehicle in said forward field of view of said at least one imaging sensor and (b) to determine a distance between the controlled vehicle and said identified headlamp or taillight of another vehicle, and wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to a size of said identified headlamp or taillight in said sensed image; and

wherein said control modulates the at least one headlamp of the vehicle responsive to said processing of said output of said at least one imaging sensor.

2. The vision system 1 , wherein said array of photosensing elements comprises an array of at least 512 rows and at least 512 columns of photosensing elements.

3. The vision system of claim 1 , wherein said at least one imaging sensor comprises a first imaging sensor and a second imaging sensor each having a respective forward field of view.

4. The vision system of claim 3 , wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to at least one of (a) a size of said identified headlamp or taillight in said sensed image, (b) a position of said identified headlamp or taillight in said sensed image, (c) an intensity of said identified headlamp or taillight in said sensed image, and (d) a rate of approach of said identified headlamp or taillight in said sensed image.

5. The vision system of claim 3 , wherein said control modulates the at least one headlamp of the vehicle by switching the at least one headlamp between a lower beam setting and a higher beam setting.

6. The vision system of claim 3 , wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to the respective outputs of said first and second imaging sensors.

7. A vision system for a vehicle, said vision system comprising:

at least one imaging sensor having a forward field of view with respect to a direction of travel of the vehicle, said at least one imaging sensor comprising a two-dimensional array of photosensing elements, said at least one imaging sensor sensing images of objects in said forward field of view;

a control responsive to an output of said at least one imaging sensor, said control modulating at least one headlamp of the vehicle in response to said output of said at least one imaging sensor, wherein said control modulates the at least one headlamp of the vehicle by switching the at least one headlamp between a lower beam setting and a higher beam setting;

wherein said control processes said output of said at least one imaging sensor both (a) to identify a headlamp or taillight of another vehicle in said forward field of view of said at least one imaging sensor and (b) to determine a distance between the controlled vehicle and said identified headlamp or taillight of another vehicle;

wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to a size of said identified headlamp or taillight in said sensed image; and

wherein said control modulates the at least one headlamp of the vehicle responsive to said processing of said output of said at least one imaging sensor.

8. The vision system of claim 7 , wherein said control modulates the at least one headlamp of the vehicle in response to at least one of (a) a position of said identified headlamp or taillight in said sensed image, (b) an intensity of said identified headlamp or taillight in said sensed image, and (c) a rate of approach of said identified headlamp or taillight in said sensed image.

9. The vision system of claim 7 , wherein said array of photosensing elements comprises an array of at least 512 rows and at least 512 columns of photosensing elements.

10. The vision system of claim 7 , wherein said at least one imaging sensor comprises a first imaging sensor and a second imaging sensor each having a respective forward field of view.

11. The vision system of claim 10 , wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to the respective outputs of said first and second imaging sensors.

12. A vision system for a vehicle, said vision system comprising:

at least one imaging sensor having a forward field of view with respect to a direction of travel of the vehicle, said at least one imaging sensor comprising a two-dimensional array of photosensing elements, wherein said at least one imaging sensor comprises a complementary-metal-oxide-semiconductor (CMOS) device, and wherein said at least one imaging sensor senses images of objects in said forward field of view, wherein said at least one imaging sensor comprises a first imaging sensor and a second imaging sensor each having a respective forward field of view;

a control responsive to an output of said at least one imaging sensor, said control modulating at least one headlamp of the vehicle in response to said output of said at least one imaging sensor;

wherein said control processes said output of said at least one imaging sensor both (a) to identify a headlamp or taillight of another vehicle in said forward field of view of said at least one imaging sensor and (b) to determine a distance between the controlled vehicle and said identified headlamp or taillight of another vehicle;

wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to (a) a size of said identified headlamp or taillight in said sensed image, (b) a position of said identified headlamp or taillight in said sensed image, (c) an intensity of said identified headlamp or taillight in said sensed image, and (d) a rate of approach of said identified headlamp or taillight in said sensed image; and

wherein said control modulates the at least one headlamp of the vehicle responsive to said processing of said output of said at least one imaging sensor.

13. The vision system of claim 12 , wherein said array of photosensing elements comprises an array of at least 512 rows and at least 512 columns of photosensing elements.

14. The vision system of claim 12 , wherein said control modulates the at least one headlamp of the vehicle by switching the at least one headlamp between a lower beam setting and a higher beam setting.

15. The vision system of claim 12 , wherein said control determines the distance from the controlled vehicle to said identified headlamp or taillight of another vehicle in response to the respective outputs of said first and second imaging sensors.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2014
From: BOS, BRENT J.; SCHOFIELD, KENNETH
To: DONNELLY CORPORATION
Reel/Frame 031914/0770 →
CHANGE OF NAME Recorded Jan 8, 2014
From: DONNELLY CORPORATION
To: MAGNA DONNELLY CORPORATION
Reel/Frame 031914/0784 →
CHANGE OF NAME Recorded Jan 8, 2014
From: MAGNA DONNELLY CORPORATION
To: MAGNA MIRRORS OF AMERICA, INC.
Reel/Frame 031914/0851 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2014
From: MAGNA MIRRORS OF AMERICA, INC.
To: MAGNA ELECTRONICS INC.
Reel/Frame 031914/0870 →
Continuity (19)
Continuation 10984403 · Nov 9, 2004
Continuation 10047901 · Jan 14, 2002
Continuation 09372915 · Aug 12, 1999
Continuation In Part 09313139 · May 17, 1999
Continuation 08935336 · Sep 22, 1997
Continuation In Part 11545039 · Oct 6, 2006
Continuation 09441341 · Nov 16, 1999
Continuation 09135565 · Aug 17, 1998
Continuation 08621863 · Mar 25, 1996
Continuation In Part 08023918 · Feb 26, 1993
Continuation In Part 11246593 · Oct 6, 2005
Continuation 10940700 · Sep 14, 2004
Continuation 10372873 · Feb 24, 2003
Continuation 09975232 · Oct 11, 2001
Continuation 09227344 · Jan 8, 1999
Continuation 08478093 · Jun 7, 1995
Continuation In Part PCTUS9401954 · Feb 25, 1994
Continuation In Part 08023918 · Feb 26, 1993
Related Publication 20080252488A1 · Oct 16, 2008