IP Library Granted Patent US 11,279,287
Granted Patent B2
US 11,279,287 · App. 15/651,383 · Granted Mar 22, 2022

Vehicle camera lens dirt protection via air flow

Inventors: Ruediger Boegel (Bessenbach-Keilberg, DE); Krishna Koravadi (Rochester Hills, MI)
Assignee: MAGNA ELECTRONICS INC.
B60R1/10B05B7/00B60R1/00B60R1/006B60R1/06B60R11/04B60S1/0848B60S1/56
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Quick Facts
Patent No.
US 11,279,287
App. No.
15/651,383
Granted
Mar 22, 2022
Kind
B2
Abstract

A system for mitigating contamination of a lens of an exterior vehicular camera includes a passive air flow device disposed at the vehicle and configured to passively direct air flow across an outer surface of a lens of the camera to establish a passive air stream curtain. An active air flow device is operable to actively propel air across the outer surface of the lens of the camera to establish an active air stream curtain. A control is operable to activate and deactivate the active air flow device. When the vehicle is driven at a speed of travel below a threshold level, the control activates the active air flow device to actively propel air across the outer surface of the lens of the camera. When the vehicle is in motion, the passive air stream curtain deflects polluting particles away from the outer surface of the lens of the camera.

Claims (45)

1. A system for mitigating contamination of a lens of a vehicular camera, said system comprising:

a camera comprising an imager and a lens, wherein said camera is disposed at an exterior portion of a vehicle and has a field of view exterior of the vehicle, and wherein said camera captures image data;

wherein an outer surface of said lens of said camera is exposed to the environment exterior of the vehicle;

a passive air flow device disposed at the vehicle and configured to passively direct air flow across said outer surface of said lens of said camera to establish a passive air stream curtain;

an active air flow device operable to actively propel air across said outer surface of said lens of said camera to establish an active air stream curtain;

a control operable to activate and deactivate said active air flow device responsive to speed of travel of the vehicle;

wherein, when the vehicle is driven at a speed of travel below a threshold level, said control activates said active air flow device to actively propel air across said outer surface of said lens of said camera; and

wherein, when the vehicle is driven at a speed of travel above the threshold level, said control does not activate said active air flow device to actively propel air across said outer surface of said lens of said camera.

2. The system of claim 1 , wherein, when the vehicle is driven and in motion, said passive air flow device passively directs air flow across said outer surface of said lens of said camera, and wherein said passive air flow device is configured such that the passively directed air flow at said outer surface of said lens is at an air flow speed greater than a wind speed at an inlet port of said passive air flow device.

3. The system of claim 1 , wherein, when the vehicle is driven and in motion, said passive air stream curtain deflects polluting particles away from said outer surface of said lens of said camera.

4. The system of claim 1 , wherein said active air flow device comprises a compressor and a tube disposed between said compressor and said outer surface of said lens of said camera, and wherein said tube is separate from said active air stream curtain.

5. The system of claim 4 , wherein said active air flow device is located remotely from said passive air flow device and said camera.

6. The system of claim 1 , wherein said control comprises an image processor, and wherein, responsive to said image processor processing image data captured by said camera, said control determines when there are polluting particles at said lens of said camera.

7. The system of claim 6 , wherein, responsive to determination of polluting particles at said lens of said camera by processing by said image processor of image data captured by said camera, said control activates said active air flow device to actively propel air across said outer surface of said lens of said camera.

8. The system of claim 1 , wherein said camera comprises a front camera disposed at a front portion of the vehicle and having a field of view forwardly of the vehicle.

9. The system of claim 8 , wherein said passive air flow device comprises an inlet port, and wherein said inlet port receives air, and wherein an air channel of said passive air flow device channels and directs received air from said inlet port across said outer surface of said lens of said camera.

10. The system of claim 9 , wherein said passive air flow device comprises a moisture separator that separates water from the received air, wherein the separated water is discharged via a water discharge port that discharges the separated water away from said lens of said camera.

11. The system of claim 10 , wherein said moisture separator comprises baffles disposed at or near said inlet port of said passive air flow device.

12. The system of claim 1 , comprising a heater device that heats air so that heated air is directed across said outer surface of said lens of said camera.

13. The system of claim 1 , comprising a plurality of cameras disposed at the vehicle, each having a respective lens and imager, wherein said active air flow device comprises a plurality of outlet ports, and wherein said outlet ports are configured to direct propelled air across the outer surfaces of the respective lenses.

14. The system of claim 13 , wherein said active air flow device selectively generates air flow through one or more of a plurality of conduits for directing air across the outer surfaces of the respective lenses.

15. The system of claim 1 , wherein said control is operable to control discharge of liquid at said lens of said camera to enhance cleaning of said outer surface of said lens of said camera.

16. A system for mitigating contamination of a lens of a vehicular camera, said system comprising:

a camera comprising an imager and a lens, wherein said camera is disposed at an exterior portion of a vehicle and has a field of view exterior of the vehicle, and wherein said camera captures image data;

wherein an outer surface of said lens of said camera is exposed to the environment exterior of the vehicle;

a passive air flow device disposed at the vehicle and configured to passively direct air flow across said outer surface of said lens of said camera to establish a passive air stream curtain;

an active air flow device operable to actively propel air across said outer surface of said lens of said camera to establish an active air stream curtain;

a control operable to activate and deactivate said active air flow device responsive to speed of travel of the vehicle;

wherein, when the vehicle is driven at a speed of travel below a threshold level, said control activates said active air flow device to actively propel air across said outer surface of said lens of said camera;

wherein, when the vehicle is driven at a speed of travel above the threshold level, said control does not active air flow device to actively propel air across said outer surface of said lens of said camera;

wherein, when the vehicle is driven and in motion, said passive air flow device passively directs air flow across said outer surface of said lens of said camera, and wherein said passive air flow device is configured such that the passively directed air flow at said outer surface of said lens is at an air flow speed greater than a wind speed at an inlet port of said passive air flow device; and

wherein, when the vehicle is driven and in motion, said passive air stream curtain deflects polluting particles away from said outer surface of said lens of said camera.

17. The system of claim 16 , wherein said control comprises an image processor, and wherein, responsive to said image processor processing image data captured by said camera, said control determines when there are polluting particles at said lens of said camera, and wherein, responsive to determination of polluting particles at said lens of said camera by processing by said image processor of image data captured by said camera, said control activates said active air flow device to actively propel air across said outer surface of said lens of said camera.

18. A system for mitigating contamination of a lens of a vehicular camera, said system comprising:

a camera comprising an imager and a lens, wherein said camera is disposed at an exterior portion of a vehicle and has a field of view exterior of the vehicle, and wherein said camera captures image data, and wherein said camera comprises a front camera disposed at a front portion of the vehicle and having a field of view forwardly of the vehicle;

wherein an outer surface of said lens of said camera is exposed to the environment exterior of the vehicle;

a passive air flow device disposed at the front portion of the vehicle, wherein said passive air flow device comprises an inlet port at the front portion of the vehicle, and wherein said inlet port receives air and said passive air flow device is configured to passively direct air flow across said outer surface of said lens of said camera to establish a passive air stream curtain;

an active air flow device operable to actively propel air across said outer surface of said lens of said camera to establish an active air stream curtain;

a control operable to activate and deactivate said active air flow device responsive to speed of travel of the vehicle;

wherein, when the vehicle is driven at a speed of travel below a threshold level, said control activates said active air flow device to actively propel air across said outer surface of said lens of said camera; and

wherein, when the vehicle is driven and in motion, said passive air stream curtain deflects polluting particles away from said outer surface of said lens of said camera.

19. The system of claim 18 , wherein, when the vehicle is driven and in motion, said passive air flow device passively directs air flow across said outer surface of said lens of said camera, and wherein said passive air flow device is configured such that the passively directed air flow at said outer surface of said lens is at an air flow speed greater than a wind speed at an inlet port of said passive air flow device.

20. The system of claim 18 , wherein said passive air flow device comprises a moisture separator that separates water from the received air, wherein the separated water is discharged via a water discharge port that discharges the separated water away from said lens of said camera.

21. The system of claim 18 , comprising a heater device that heats air so that heated air is directed across said outer surface of said lens of said camera.

22. The system of claim 18 , wherein said control is operable to control discharge of liquid at said lens of said camera to enhance cleaning of said outer surface of said lens of said camera.

Continuity (4)
Continuation 14052945 · Oct 14, 2013
Provisional Application 61804786 · Mar 25, 2013
Provisional Application 61713772 · Oct 15, 2012
Related Publication 20170320440A1 · Nov 9, 2017
Cited By (2)
US 12,449,653 US 12,704,711