Claims
- 1. A method for aligning a position sensor in a vehicle with steerable wheels comprising:
obtaining an absolute position value responsive to a handwheel position signal from a steering angle sensor; obtaining a relative position value responsive to an encoder signal count from a position encoder; obtaining an index position value responsive to an index position signal; determining a correction factor responsive to said relative position value and said index position value; receiving an alignment enable signal; and wherein said aligning is responsive to at least one said absolute position value, said relative position value, said index position value, under conditions determined from a status of said alignment enable signal.
- 2. The method of claim 1 wherein said aligning comprises correcting said absolute position value to a correction factor at an instance of transition of said index position signal and utilizing said encoder signal count to ascertain displacement relative to a known position.
- 3. The method of claim 1 wherein said correction factor comprises a left correction factor and a right correction factor.
- 4. The method of claim 1 wherein said determining comprises performing a handwheel sweep from a starting position to a least a left index signal transition and at least a right index signal transition, and thereafter returning to a center position, while ascertaining a relative position value at said left index signal transition, said a right index signal transition, and said center position respectively.
- 5. The method of claim 1 wherein said correction factor further comprises a difference in said relative position value for said left index signal transition and a center position, and a difference in said relative position value for said right index signal transition and said center position.
- 6. The method of claim 4 wherein said correction factor further comprises a difference in said relative position value for said left index signal transition and said center position, and a difference in said relative position value for said right index signal transition and said center position.
- 7. The method of claim 6 wherein said aligning comprises correcting said absolute position value to a correction factor at the instance of transition of said index position signal and utilizing said encoder signal count to ascertain displacement relative to a known position.
- 8. The method of claim 7 wherein said correction factor comprises a left correction factor and a right correction factor.
- 9. A method for aligning a steerable wheel in a vehicle with electric power steering comprising:
obtaining an alignment correction corresponding to a computed correction of wheel position relative to said vehicle from an alignment apparatus; receiving an alignment enable signal; and wherein said aligning is responsive to said alignment correction under conditions determined from a status of said alignment enable signal.
- 10. The method of claim 9 wherein said alignment correction comprises left wheel angle corrections.
- 11. The method of claim 9 wherein said alignment correction comprises right wheel angle corrections.
- 12. The method of claim 9 wherein said alignment correction comprises a left wheel angle correction and a right wheel angle correction.
- 13. The method of claim 9 wherein said alignment correction comprises rear wheel angle corrections.
- 14. The method of claim 9 wherein said aligning includes a compensating process to formulate an adjusted correction command.
- 15. The method of claim 14 wherein said compensating process comprises a lookup table responsive to a magnitude of said alignment correction.
- 16. The method of claim 9 wherein said aligning includes combining said adjusted correction command with a desired wheel angle to formulate a composite wheel angle command for commanding a motor.
- 17. The method of claim 16 wherein said composite wheel angle command drives a motor in a to reduce said alignment correction and thereby said composite wheel angle command.
- 18. The method of claim 9 wherein said aligning generates and saves an offset for combination with subsequent wheel angle position measurements.
- 19. The method of claim 14 wherein said aligning includes combining said adjusted correction command with a desired wheel angle to formulate a composite wheel angle command for commanding a motor.
- 20. The method of claim 19 wherein said composite wheel angle command drives a motor in a to reduce said alignment correction and thereby said composite wheel angle command.
- 21. The method of claim 20 wherein said aligning generates and saves an offset for combination with subsequent wheel angle position measurements.
- 22. The method of claim 21 wherein said alignment correction comprises left wheel angle corrections.
- 23. The method of claim 21 wherein said alignment correction comprises right wheel angle corrections.
- 24. The method of claim 22 wherein said alignment correction comprises a left wheel angle correction and a right wheel angle correction.
- 25. The method of claim 24 wherein said alignment correction comprises rear wheel angle corrections.
- 26. A storage medium encoded with a machine-readable computer program code for aligning a position sensor in a vehicle with steerable wheels, said storage medium including instructions for causing controller to implement a method comprising:
obtaining an absolute position value responsive to a handwheel position signal from a steering angle sensor; obtaining a relative position value responsive to an encoder signal count from a position encoder; obtaining an index position value responsive to an index position signal; determining a correction factor responsive to said relative position value and said index position value; receiving an alignment enable signal; and wherein said aligning is responsive to at least one said absolute position value, said relative position value, said index position value, under conditions determined from a status of said alignment enable signal.
- 27. The storage medium of claim 26 wherein said aligning comprises correcting said absolute position value to a correction factor at an instance of transition of said index position signal and utilizing said encoder signal count to ascertain displacement relative to a known position.
- 28. The storage medium of claim 26 wherein said correction factor comprises a left correction factor and a right correction factor.
- 29. The storage medium of claim 26 wherein said determining comprises performing a handwheel sweep from a starting position to a least a left index signal transition and at least a right index signal transition, and thereafter returning to a center position, while ascertaining a relative position value at said left index signal transition, said a right index signal transition, and said center position respectively.
- 30. The storage medium of claim 26 wherein said correction factor further comprises a difference in said relative position value for said left index signal transition and a center position, and a difference in said relative position value for said right index signal transition and said center position.
- 31. The storage medium of claim 29 wherein said correction factor further comprises a difference in said relative position value for said left index signal transition and said center position, and a difference in said relative position value for said right index signal transition and said center position.
- 32. The storage medium of claim 31 wherein said aligning comprises correcting said absolute position value to a correction factor at the instance of transition of said index position signal and utilizing said encoder signal count to ascertain displacement relative to a known position.
- 33. The storage medium of claim 32 wherein said correction factor comprises a left correction factor and a right correction factor.
- 34. A storage medium encoded with a machine-readable computer program code for aligning a steerable wheel in a vehicle with electric power steering, said storage medium including instructions for causing controller to implement a method comprising:
obtaining an alignment correction corresponding to a computed correction of wheel position relative to said vehicle from an alignment apparatus; receiving an alignment enable signal; and wherein said aligning is responsive to said alignment correction under conditions determined from a status of said alignment enable signal.
- 35. The storage medium of claim 34 wherein said alignment correction comprises left wheel angle corrections.
- 36. The storage medium of claim 34 wherein said alignment correction comprises right wheel angle corrections.
- 37. The storage medium of claim 34 wherein said alignment correction comprises a left wheel angle correction and a right wheel angle correction.
- 38. The storage medium of claim 34 wherein said aligmnment correction comprises rear wheel angle corrections.
- 39. The storage medium of claim 34 wherein said aligning includes a compensating process to formulate an adjusted correction command.
- 40. The storage medium of claim 39 wherein said compensating process comprises a lookup table responsive to a magnitude of said alignment correction.
- 41. The storage medium of claim 34 wherein said aligning includes combining said adjusted correction command with a desired wheel angle to formulate a composite wheel angle command for commanding a motor.
- 42. The storage medium of claim 41 wherein said composite wheel angle command drives a motor in a to reduce said alignment correction and thereby said composite wheel angle command.
- 43. The storage medium of claim 34 wherein said aligning generates and saves an offset for combination with subsequent wheel angle position measurements.
- 44. The storage medium of claim 39 wherein said aligning includes combining said adjusted correction command with a desired wheel angle to formulate a composite wheel angle command for commanding a motor.
- 45. The storage medium of claim 44 wherein said composite wheel angle command drives a motor in a to reduce said alignment correction and thereby said composite wheel angle command.
- 46. The storage medium of claim 45 wherein said aligning generates and saves an offset for combination with subsequent wheel angle position measurements.
- 47. The storage medium of claim 46 wherein said alignment correction comprises left wheel angle corrections.
- 48. The storage medium of claim 46 wherein said alignment correction comprises night wheel angle corrections.
- 49. The storage medium of claim 47 wherein said alignment correction comprises a left wheel angle correction and a right wheel angle correction.
- 50. The storage medium of claim 49 wherein said alignment correction comprises rear wheel angle corrections.
- 51. A computer data signal embodied in a carrier wave for aligning a position sensor in a vehicle with steerable wheels, said data signal comprising code configured to cause a controller to implement a method comprising:
obtaining an absolute position value responsive to a handwheel position signal from a steering angle sensor; obtaining a relative position value responsive to an encoder signal count from a position encoder; obtaining an index position value responsive to an index position signal; determining a correction factor responsive to said relative position value and said index position value; receiving an alignment enable signal; and wherein said aligning is responsive to at least one said absolute position value, said relative position value, said index position value, under conditions determined from a status of said alignment enable signal.
- 52. The computer data signal of claim 51 wherein said aligning comprises correcting said absolute position value to a correction factor at an instance of transition of said index position signal and utilizing said encoder signal count to ascertain displacement relative to a known position.
- 53. The computer data signal of claim 51 wherein said correction factor comprises a left correction factor and a right correction factor.
- 54. The computer data signal of claim 51 wherein said determining comprises performing a handwheel sweep from a starting position to a least a left index signal transition and at least a right index signal transition, and thereafter returning to a center position, while ascertaining a relative position value at said left index signal transition, said a right index signal transition, and said center position respectively.
- 55. The computer data signal of claim 51 wherein said correction factor further comprises a difference in said relative position value for said left index signal transition and a center position, and a difference in said relative position value for said right index signal transition and said center position.
- 56. The computer data signal of claim 4 wherein said correction factor further comprises a difference in said relative position value for said left index signal transition and said center position, and a difference in said relative position value for said right index signal transition and said center position.
- 57. The computer data signal of claim 56 wherein said aligning comprises correcting said absolute position value to a correction factor at the instance of transition of said index position signal and untilizing said encoder signal count to ascertain displacement relative to a known position.
- 58. The computer data signal of claim 57 wherein said correction factor comprises a left correction factor and a right correction factor.
- 59. A computer data signal embodied in a carrier wave for aligning a steerable wheel in a vehicle with electric power steering, said data signal comprising code configured to cause a controller to implement a method comprising:
obtaining an alignment correction corresponding to a computed correction of wheel position relative to said vehicle from an alignment apparatus; receiving an alignment enable signal; and wherein said aligning is responsive to said alignment correction under conditions determined from a status of said alignment enable signal.
- 60. The computer data signal of claim 59 wherein said alignment correction comprises left wheel angle corrections.
- 61. The computer data signal of claim 59 wherein said alignment correction comprises right wheel angle corrections.
- 62. The computer data signal of claim 59 wherein sad alignment correction comprises a left wheel angle correction and a right wheel angle correction.
- 63. The computer data signal of claim 59 wherein said alignment correction comprises rear wheel angle corrections.
- 64. The computer data signal of claim 59 wherein said aligning includes a compensating process to formulate an adjusted correction command.
- 65. The computer data signal of claim 64 wherein said compensating process comprises a lookup table responsive to a magnitude of said alignment correction.
- 66. The computer data signal of claim 59 wherein said aligning includes combining said adjusted correction command with a desired wheel angle to formulate a composite wheel angle command for commanding a motor.
- 67. The computer data signal of claim 66 wherein said composite wheel angle command drives a motor in a to reduce said alignment correction and thereby said composite wheel angle command.
- 68. The computer data signal of claim 59 wherein said aligning generates and saves an offset for combination with subsequent wheel angle position measurements.
- 69. The computer data signal of claim 64 wherein said aligning includes combining said adjusted correction command with a desired wheel angle to formulate a composite wheel angle command for commanding a motor.
- 70. The computer data signal of claim 69 wherein said composite wheel angle command drives a motor in a to reduce said alignment correction and thereby said composite wheel angle command.
- 71. The computer data signal of claim 20 wherein said aligning generates and saves an offset for combination with subsequent wheel angle position measurements.
- 72. The computer data signal of claim 71 wherein said alignment correction comprises left wheel angle corrections.
- 73. The computer data signal of claim 71 wherein said alignment correction comprises right wheel angle corrections.
- 74. The computer data signal of claim 72 wherein said alignment correction comprises a left wheel angle correction and a right wheel angle correction.
- 75. The computer data signal of claim 74 wherein said alignment correction comprises rear wheel angle corrections.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. provisional application No. 60/309,434 filed Aug. 01, 2001 the contents of which are incorporated by reference herein in their entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60309434 |
Aug 2001 |
US |