Claims
- 1. A vehicle guidance system for guiding a vehicle along a magnetic marker comprising:
a first magnetic sensor having a sensing axis, said first sensor measuring a first magnetic field; a second magnetic sensor having a sensing axis, said second sensor measuring a second magnetic field, said sensing axis of said second magnetic sensor crossing said sensing axis of said first magnetic sensor at a vehicle guide point; and a processor configured to receive data representative of the magnetic field measured by said first and second sensors and to calculate a lateral offset between said guide point and the magnetic marker based upon the measured magnetic fields.
- 2. The vehicle guidance system of claim 1 further including a steering controller and wherein said processor further determines a steering control signal proportional to the lateral offset and communicates said steering control signal to said controller.
- 3. The vehicle guidance system of claim 1 wherein said first and second magnetic sensors have uncompensated magnetic field strength sensitivity equal to or greater than 16 (mV/V)/(kA/m).
- 4. The vehicle guidance system of claim 1 wherein said first and second magnetic sensors discriminate changes in magnetic field of 1 Gauss or less.
- 5. The vehicle guidance system of claim 1 wherein said first and second magnetic sensors discriminate changes in magnetic field of 10 milliGauss or less.
- 6. The vehicle guidance system of claim 1 wherein said first and second magnetic sensors are Wheatstone bridge sensors.
- 7. The vehicle guidance system of claim 1 including a dual bridge giant magnetoresistive device defining said first and second magnetic sensors.
- 8. The vehicle guidance system of claim 1 wherein said processor calculates said lateral offset by the equation G(A−B)/(A+B), wherein A is the magnetic field measured by the first magnetic sensor and B is the magnetic field measured by the second magnetic sensor.
- 9. The vehicle guidance system of claim 1 further including a third sensor laterally spaced from said guide point, said third sensor measuring a third magnetic field, said processor being further configured to receive data representative of magnetic field measured by said third sensor and to subtract the third magnetic field from the first magnetic field when calculating the lateral offset to approximate nulling of the third magnetic field.
- 10. The vehicle guidance system of claim 9 wherein the third magnetic field approximates ambient magnetic field in the proximity of the third sensor or stray magnetic field from the vehicle.
- 11. The vehicle guidance system of claim 10 wherein the third magnetic field approximates ambient magnetic field in the proximity of the third sensor and stray magnetic field from the vehicle.
- 12. The vehicle guidance system of claim 9 wherein said processor calculates the lateral offset of the guide point from a side of the marker by the equation G[(A−C)/(A+C)]±K, wherein A is the magnetic field measured by the first sensor, C is the magnetic field measured by the third sensor, and K is an offset dependent on the width of the marker.
- 13. The vehicle guidance system of claim 9 wherein said third magnetic field is less than the first and second magnetic fields.
- 14. The vehicle guidance system of claim 9 further including a fourth sensor laterally spaced from said guide point in a direction opposite said third sensor, said fourth sensor measuring a fourth magnetic field, said processor being further configured to receive data representative of magnetic field measured by said fourth sensor and to subtract the fourth magnetic field from the second magnetic field when calculating the lateral offset to approximate nulling of the fourth magnetic field.
- 15. The vehicle guidance system of claim 14 wherein the fourth magnetic field approximates ambient magnetic field in the proximity of the fourth sensor or stray magnetic field from the vehicle.
- 16. The vehicle guidance system of claim 14 wherein the fourth magnetic field approximates ambient magnetic field in the proximity of the fourth sensor and stray magnetic field from the vehicle.
- 17. A driverless vehicle configured to be guided along a magnetic marker, said vehicle comprising:
a vehicle have a lateral centerline; a guidance system fixed to the vehicle, said guidance system including:
a first magnetic sensor having a sensing axis, said first sensor measuring a first magnetic field; a second magnetic sensor having a sensing axis, said second sensor measuring a second magnetic field, said sensing axis of said second magnetic sensor intersecting said sensing axis of said first magnetic sensor at a vehicle guide point; and a processor configured to receive data representative of the magnetic field measured by said first and second sensors and calculate a lateral offset between said guide point and the magnetic marker based upon the measured magnetic fields.
- 18. The vehicle guidance system of claim 17 further including a steering controller and wherein said processor further determines a steering control signal proportional to the lateral offset and communicates said steering control signal to said controller.
- 19. The vehicle guidance system of claim 17 wherein said first and second magnetic sensors have uncompensated magnetic field strength sensitivity equal to or greater than 16 (mV/V)/(kA/m).
- 20. The vehicle guidance system of claim 17 wherein said first and second magnetic sensors discriminate changes in magnetic field of 1 Gauss or less.
- 21. The vehicle guidance system of claim 17 further including a third sensor laterally spaced from said guide point, said third sensor measuring a third magnetic field, said processor being further configured to receive data representative of magnetic field measured by said third sensor and to subtract the third magnetic field from the first magnetic field when calculating the lateral offset to approximate nulling of the third magnetic field.
- 22. The vehicle guidance system of claim 21 wherein the third magnetic field approximates ambient magnetic field in the proximity of the third sensor or stray magnetic field from the vehicle.
- 23. The vehicle guidance system of claim 21 wherein the third magnetic field approximates ambient magnetic field in the proximity of the third sensor and stray magnetic field from the vehicle.
- 24. A vehicle guidance system for guiding a vehicle along a magnetic marker comprising:
a first magnetic sensor having a sensing axis, said first sensor measuring a first magnetic field; a second magnetic sensor having a sensing axis, said second sensor measuring a second magnetic field, said sensing axis of said second magnetic sensor crossing said sensing axis of said first magnetic sensor at a vehicle guide point; and a processor configured to receive data representative of the magnetic field measured by said first and second sensors, to calculate a running average of the first magnetic field and the second magnetic field.
- 25. The vehicle guidance system of claim 24 further including a steering controller and wherein said processor further determines a steering control signal proportional to the running average of the first magnetic field and the second magnetic field and communicates said steering control signal to said controller.
- 26. A method for guiding a vehicle in response to a marker having magnetic field comprising the steps of:
measuring magnetic field strength proximate the marker; measuring ambient magnetic field strength remote from the marker; nulling the ambient magnetic field by removing the remote magnetic field strength from the proximate magnetic field strength; calculating a lateral displacement between the vehicle and the marker using the nulled magnetic field strength; and guiding the vehicle in response to the lateral displacement between the vehicle and the marker.
- 27. The method of claim 26 including the step of measuring magnetic field strength proximate to the marker of 16 (mV/V)/(kA/m) or less.
- 28. The method of claim 26 wherein the marker has a pair of opposite edges and including the steps of calculating a lateral displacement between the vehicle and one of the pair of opposite marker edges using the nulled magnetic field strength, and the guiding the vehicle along the one of the pair of opposite marker edges.
- 29. A method for guiding a vehicle in response to a marker having magnetic field comprising the steps of:
measuring magnetic field strength proximate the marker; calculating a running average of the magnetic field strength; and guiding the vehicle in response to the running average of the magnetic field strength.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application No. 60/341,195, filed Dec. 12, 2001, the entire disclosure of the application is considered part of the disclosure of this application and is hereby incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60341195 |
Dec 2001 |
US |