Claims
- 1. A vision system for a vehicle, comprising:
an image capture device which is adapted to receive an image of a scene occurring exteriorly of the vehicle; a non-circular aperture stop positioned along an optical path between the scene and said image capture device, said non-circular aperture stop providing a non-circular aperture through which the image of the scene passes; and a display system which displays an image from an output of said image capture device.
- 2. The vision system of claim 1 further comprising a reflective element adapted to be mounted on a portion of the vehicle for reflecting an image of the scene occurring exteriorly of the vehicle.
- 3. The vision system of claim 2, wherein said non-circular aperture stop is positioned along the optical path between said reflective element and said image capture device.
- 4. The vision system of claim 3, wherein said reflective element has a first radius of curvature and a second radius of curvature, said first radius of curvature being different than said second radius of curvature.
- 5. The vision system of claim 3, wherein said reflective element reflects a non-rotationally symmetrical image toward said image capture device.
- 6. The vision system of claim 5, wherein said non-circular aperture comprises an elliptical aperture.
- 7. The vision system of claim 6, wherein said elliptical aperture has a first axis and a second axis, said first axis being larger than said second axis, said reflective element having a first radius of curvature and a second radius of curvature, said first radius of curvature being greater than said second radius of curvature, said first axis being generally aligned with a first plane defined by said first radius of curvature and said second axis being generally aligned with a second plane defined by said second radius of curvature.
- 8. The vision system of claim 7 further including a correcting optic positioned along the optical path between the scene and said image capture device.
- 9. The vision system of claim 8, wherein said correcting optic includes a diffractive element.
- 10. The vision system of claim 8, wherein said correcting optic includes a refractive element.
- 11. The vision system of claim 6, wherein said elliptical aperture has a first axis and a second axis, said first axis being larger than said second axis, said reflective element having a first radius of curvature and a second radius of curvature, said second radius of curvature being greater than said first radius of curvature, said first axis being generally aligned with a first plane defined by said first radius of curvature and said second axis being generally aligned with a second plane defined by said second radius of curvature.
- 12. The vision system of claim 11 further including a correcting optic positioned along the optical path between the scene and said image capture device.
- 13. The vision system of claim 12, wherein said correcting optic includes at least one of a diffractive element and a refractive element.
- 14. The vision system of claim 1 further including a non-symmetrical reflective element positionable on a portion of the vehicle for reflecting an image of the scene occurring exteriorly of the vehicle toward said image capture device.
- 15. The vision system of claim 14, wherein said non-circular aperture stop is positioned between said non-symmetrical reflective element and said image capture device.
- 16. The vision system of claim 15, wherein said non-circular aperture is non-symmetrical.
- 17. The vision system of claims 16, wherein a shape of said non-symmetrical aperture is selected in response to a degree of astigmatism and aberrations in the reflected image.
- 18. The vision system of claim 17, wherein a reflective surface of said non-symmetrical reflective element is defined by one or more polynomial equations, said non-symmetrical aperture being defined in response to the shape of said reflective surface.
- 19. The vision system of claim 15 further including a correcting optic positioned along the optical path between said non-symmetrical reflective element and said image capture device.
- 20. The vision system of claim 15 further including a second reflective element positioned in an optic path from said non-symmetrical reflective element to said image capture device and adapted to redirect the reflected image toward said image capture device.
- 21. The vision system of claim 20, wherein said non-circular aperture stop is positioned along the optical path between said second reflective element and said image capture device.
- 22. The vision system of claim 21 further including a correcting optic positioned along the optical path between said second reflective element and said image capture device.
- 23. The vision system of claim 22, wherein said non-circular aperture stop is positioned between said correcting optic and said image capture device.
- 24. The vision system of claim 22, wherein said non-circular aperture stop is positioned between said correcting optic and the scene.
- 25. The vision system of claim 22, wherein said correcting optic includes at least one of a diffractive element and a refractive element.
- 26. The vision system of claim 1, wherein the image being received by said image capture device is received as at least one blur spot, said non-circular aperture being oriented with respect to said image capture device in response to a shape and orientation of the at least one blur spot being received by said image capture device.
- 27. The vision system of claim 26, wherein said non-circular aperture has a first axis and a second axis, said first axis being larger than said second axis, the at least one blur spot having a greater axis of aberration and a lesser axis of aberration, said non-circular aperture stop being oriented with respect to said image capture device to generally align at least one of said first and second axes with at least one of the greater and lesser axes of aberration of the at least one blur spot.
- 28. The vision system of claim 27, wherein said non-circular aperture stop is oriented with respect to said image capture device such that said first axis is generally aligned with the lesser axis of aberration of the at least one blur spot and said second axis is generally aligned with the greater axis of aberration of the at least one blur spot.
- 29. The vision system of claim 27, wherein said non-circular aperture stop is oriented with respect to said image capture device such that said first axis is generally aligned with the greater axis of aberration of the at least one blur spot and said second axis is generally aligned with the lesser axis of aberration of the at least one blur spot.
- 30. The vision system of claim 27, wherein said first and second axes are generally orthogonal to one another, the greater and lesser axes of aberration of the at least one blur spot being generally orthogonal to one another.
- 31. A vision system for a vehicle, comprising:
an image capture device which is adapted to receive an image of a scene occurring exteriorly of the vehicle; a reflective element adapted to be mounted on a portion of the vehicle and configured to reflect a non-rotationally symmetrical image of the scene occurring exteriorly of the vehicle toward said image capture device; a non-circular aperture stop positioned along an optical path between said reflective element and said image capture device, said non-circular aperture stop defining a non-circular aperture through which the reflected image passes; and a display system which displays an image from an output of said image capture device.
- 32. The vision system of claim 31, wherein said non-circular aperture stop comprises an elliptical aperture stop defining an elliptical aperture having a first axis and a second axis, said first axis being larger than said second axis.
- 33. The vision system of claim 32, wherein said reflective element has a first radius of curvature defining a first plane and a second radius of curvature defining a second plane, said first radius of curvature being greater than said second radius of curvature.
- 34. The vision system of claim 33, wherein said first axis of said elliptical aperture is generally aligned with said first plane defined by said first radius of curvature and said second axis of said elliptical aperture is generally aligned with said second plane defined by said second radius of curvature.
- 35. The vision system of claim 34 further including a correcting optic positioned along the optical path between said reflective element and said image capture device.
- 36. The vision system of claim 35, wherein said correcting optic includes at least one of a diffractive element and a refractive element.
- 37. The vision system of claim 35 further including a second reflective element positioned in an optic path from said reflective element to said image capture device and adapted to redirect the reflected image toward said image capture device.
- 38. The vision system of claim 37, wherein said non-circular aperture is positioned along the optical path between said second reflective element and said image capture device.
- 39. The vision system of claim 33, wherein said first axis of said elliptical aperture is generally aligned with said second plane defined by said second radius of curvature and said second axis of said elliptical aperture is generally aligned with said first plane defined by said first radius of curvature.
- 40. The vision system of claim 39 further including a correcting optic positioned along the optical path between said reflective element and said image capture device.
- 41. The vision system of claim 40, wherein said correcting optic includes at least one of a diffractive element and a refractive element.
- 42. The vision system of claim 39 further including a second reflective element positioned in an optic path from said reflective element to said image capture device and adapted to redirect the reflected image toward said image capture device.
- 43. The vision system of claim 42, wherein said non-circular aperture is positioned along the optical path between said second reflective element and said image capture device.
- 44. The vision system of claim 31, wherein said reflective element comprises a non-rotationally symmetrical reflective element.
- 45. The vision system of claim 44, wherein said non-circular aperture stop comprises a non-symmetrical, non-circular aperture.
- 46. The vision system of claim 45, wherein a shape of said non-symmetrical, non-circular aperture is selected in response to a degree of astigmatism and aberration in the reflected image.
- 47. The vision system of claim 45, wherein a shape of said non-symmetrical, non-circular aperture is selected in response to at least one equation defining a surface of said non- rotationally symmetrical reflective element.
CROSS REFERENCE TO RELATED APPLICATION
[0001] The present application claims priority from U.S. Provisional Pat. Application, Ser. No. 60/187,961, filed Mar. 9, 2000 by Brent J. Bos, which is hereby incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60187961 |
Mar 2000 |
US |