Claims
- 1. A method for correcting skew angle in a document scanner comprising:
a1. transporting said document past a camera; b1. detecting a leading edge of said document; c1. determining a leading edge skew angle of said document using a first algorithm; d1. rotating said camera to align said camera with said document; e1. determining if said document is completely within a field of view of said camera; f1. recalculate said skew angle based on entire document using a second algorithm; g1. if said skew angle is not within a predetermined tolerance, rotating said camera to align said camera with said document; and h1. capturing an image of said document when said document is completely within said field of view of said camera.
- 2. A method for correcting skew angle in a document scanner as in claim 1 comprising:
e2. stopping transport of said document if said camera is not aligned with said document when said document is completely within said field of view of said camera.
- 3. A method for correcting skew angle in a document scanner as in claim 2 comprising:
i1. transporting said document out of said field of view of said camera.
- 4. A method for correcting skew angle in a document scanner as in claim 1 wherein said detection of said leading edge is accomplished by sub-sampling.
- 5. A method for correcting skew angle in a document scanner as in claim 4 wherein said sub-sampled image is stored to a temporary memory.
- 6. A method for correcting skew angle in a document scanner as in claim 1 wherein said camera utilizes an area sensor array as the imaging sensor.
- 7. A method for correcting skew angle in a document scanner as in claim 6 wherein said area sensor array is comprised of charged couple devices (CCD).
- 8. A method for correcting skew angle in a document scanner as in claim 6 wherein said area sensor array is comprised of complementary metal oxide semiconductor (CMOS).
- 9. A method for correcting skew angle in a document scanner as in claim 1 wherein said document is a sheet of paper.
- 10. A method for correcting skew angle in a document scanner as in claim 1 wherein said document is a photograph.
- 11. A method for correcting skew angle in a document scanner as in claim 1 wherein said document is a microfilm.
- 12. A method for correcting skew angle in a document scanner comprising:
a1. transporting said document past a camera; b1. detecting a leading edge of said document; c1. determining a leading edge skew angle of said document using a first algorithm; d1. rotating said camera to align said camera with said document; e1. determining if said document is completely within a field of view of said camera; e2. stopping transport of said document if said camera is not aligned with said document when said document is completely within said field of view of said camera; e3. recalculating skew angle based on entire document using a second algorithm; e4. said skew angle is not within predetermined tolerance, rotating said camera to align said camera with said document; f1. capturing an image of said document when said camera is completely aligned with said document within said field of view of said camera; and g1. transporting said document out of said field of view of said camera.
- 13. A document scanner comprising:
a camera for capturing an image of said document; a transport for moving said document past said camera; a sensor for detecting a leading edge of said document; a microprocessor which determines a leading edge skew angle of said document and if said document is completely within a field of view of said camera, based on a signal from said sensor; and a mechanism for rotating said camera to align said camera with said document.
- 14. A document scanner as in claim 13 wherein said digital camera utilizes an area sensor array.
- 15. A document scanner as in claim 14 wherein said sensor array is comprised of charged couple devices (CCD).
- 16. A document scanner as in claim 14 wherein said area sensor array is comprised of complementary metal oxide semiconductors (CMOS).
- 17. A document scanner as in claim 13 wherein said document is a sheet of paper.
- 18. A document scanner as in claim 13 wherein said document is a photograph.
- 19. A document scanner as in claim 13 wherein said document is a microfilm.
- 20. A method for correcting skew angle in a document scanner comprising:
a1. transporting a document past a camera; b1. detecting a leading edge of said document; c1. determining a leading edge skew angle of said document based on said leading edge; d1. rotating said camera to align said camera with said document; e1. determining if said document is completely within a field of view of said camera; and f1. capturing an image of said document when said document is completely within said field of view of said camera.
- 21. A method for correcting skew angle in a document scanner comprising:
a1. transporting a document past a camera; b1. detecting a leading edge of said document with an auxiliary digital image sensor wherein said auxiliary sensor has a same field of view as said camera; c1. determining a leading edge skew angle of said document based on said leading edge; d1. rotating said camera and said auxiliary sensor to align said camera and said auxiliary sensor with said document; and e1. capturing an image of said document when said document is completely within said field of view of said camera and said auxiliary digital image sensor.
- 22. A method for correcting skew angle in a document scanner as in claim 21 comprising:
d2. stopping transport of said document if said camera is not aligned with said document when said document is completely within said field of view of said camera.
- 23. A method for correcting skew angle in a document scanner as in claim 21 comprising:
f1. transporting said document out of said field of view of said camera.
- 24. A method for correcting skew angle in a document scanner as in claim 21 wherein said document is an image on microfilm.
- 25. A method for correcting skew angle in a document scanner as in claim 21 wherein said camera is an analog camera.
- 26. A method for correcting skew angle in a document scanner as in claim 21 wherein said auxiliary sensor is comprised of charged couple devices (CCD).
- 27. A method for correcting skew angle in a document scanner as in claim 21 wherein said auxiliary sensor is comprised of complementary metal oxide semiconductors (CMOS).
- 28. A method for correcting skew angle in a document scanner as in claim 21 wherein said document is a sheet of paper.
- 29. A method for correcting skew angle in a document scanner as in claim 21 wherein said document is a photograph.
- 30. A document scanner comprising:
a camera for capturing an image of said document; a transport for moving said document past said camera; an auxiliary sensor for detecting a leading edge of said document; a microprocessor which determines a leading edge skew angle of said document and if said document is completely within a field of view of said camera, based on a signal from said sensor; and a mechanism for rotating said camera to align said camera with said document.
- 31. A document scanner as in claim 30 wherein said camera is an analog camera.
- 32. A document scanner as in claim 30 wherein said auxiliary sensor is comprised of charged couple devices (CCD).
- 33. A document scanner as in claim 30 wherein said auxiliary sensor is comprised of complementary metal oxide semiconductors (CMOS).
- 34. A document scanner as in claim 30 wherein said document is a sheet of paper.
- 35. A document scanner as in claim 30 wherein said document is a photograph.
- 36. A document scanner as in claim 30 wherein said document is a microfilm image.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] Reference is made to commonly-assigned co-pending U.S. patent application Ser. No. 09/650,203, filed Aug. 29, 2000, entitled METHOD FOR DETECTION OF SKEW ANGLE AND BORDER OF DOCUMENT IMAGES IN A PRODUCTION SCANNING ENVIRONMENT, by Lee et al., the disclosure of which is incorporated herein.