Claims
- 1. A method of adaptively controlling the speed of an automotive vehicle having a controller comprising:
detecting a ramp with the controller; and adjusting the automotive vehicle speed in response to said ramp.
- 2. A method as in claim 1 further comprising inhibiting a resume speed of the automotive vehicle upon detecting said ramp.
- 3. A method as in claim 1 further comprising maintaining a hold speed while on said ramp.
- 4. A method as in claim 1 wherein detecting a ramp comprises detecting a ramp with a navigation system.
- 5. A method as in claim 4 wherein detecting a ramp with a navigation system comprises:
performing a map query; and classifying a road segment in response to said map query.
- 6. A method as in claim 4 wherein detecting a ramp with a navigation system comprises:
receiving a navigation signal; analyzing said navigation signal to determine said ramp is an exit ramp; and adjusting auto motive vehicle speed in response to said navigation signal.
- 7. A method as in claim 1 wherein detecting a ramp comprises:
classifying said ramp to obtain a ramp classification; and establishing said ramp to be an exit ramp in response to said ramp classification.
- 8. A method as in claim 7 wherein classifying said ramp comprises classifying a road segment of said ramp as a classification selected from the following group comprising: highway, freeway, residential, exit ramp, high speed connector ramp, single road, parallel road, and divided road.
- 9. A method as in claim 1 wherein detecting a ramp comprises:
determining a speed category of said ramp; and establishing said ramp to be an exit ramp or a high-speed connector ramp.
- 10. A method as in claim 1 further comprising signaling a warning system.
- 11. A method as in claim 1 wherein detecting a ramp comprises following a route.
- 12. A method as in claim 1 wherein detecting a ramp comprises:
determining a position of an exit ramp; establishing a heading component of said exit ramp; determining that the automotive vehicle has changed lanes; and determining that the automotive vehicle is on an exit ramp in response to the position of said exit ramp, said heading component, and the automotive vehicle changed lanes.
- 13. A method as in claim 12 wherein determining the position of the exit ramp comprises:
examining road segment information for highway and ramp classifications; searching road segment information for start node identification; searching stored data for highway and ramp segment pairs that have identical start nodes; and identifying an exit ramp in response to said identical start nodes.
- 14. A method as in claim 12 wherein determining a position of an exit ramp comprises:
determining probable candidate positions; selecting a best candidate position from said probable candidate positions; determining a candidate position of said probable candidates positions is on an exit ramp; and establishing the position of the automotive vehicle relative to the position of an exit ramp.
- 15. A method as in claim 12 wherein selecting a best candidate position comprises:
determining possible candidate positions using tools selected from the following group comprising: vehicle speed, yaw rate, GPS data, map data, navigation data, and a combination thereof; assigning a probability to each possible candidate position; and determining the possible candidate with the highest probability and labeling that candidate the best candidate.
- 16. A method as in claim 12 wherein establishing a heading component of said exit ramp comprises determining a direction of said exit ramp in relation to a road segment.
- 17. A method as in claim 12 further comprising inhibiting resume speed of the automotive vehicle, when the automotive vehicle is determined to be on an exit ramp or near an exit ramp, for a prescribed period of time.
- 18. A method as in claim 1 wherein detecting a ramp comprises:
detecting an exit only lane; and inhibiting resume speed of the automotive vehicle while operating the automotive vehicle in said exit only lane.
- 19. A method as in claim 1 wherein detecting a ramp comprises:
detecting an exit only lane; inhibiting resume speed of the automotive vehicle while operating the automotive vehicle in said exit only lane; detecting a ramp; determining a position of an exit ramp; establishing a heading component of said exit ramp; determining the automotive vehicle h as changed lanes; determining that the automotive vehicle is on an exit ramp in response to determining the automotive vehicle has changed lanes and the position of said exit ramp; and inhibiting resume speed of the automotive vehicle in response to the position of said exit ramp.
- 20. A method of adaptively controlling the speed of a automotive vehicle having a controller comprising:
detecting an exit ramp; determining a position of an exit ramp; establishing a heading component of said exit ramp; determining the automotive vehicle has changed lanes; and determining that the automotive vehicle is on an exit ramp in response to the position of said exit ramp, said heading component, and the automotive vehicle changed lanes; inhibiting resume speed of the automotive vehicle in response to detection of said exit ramp.
- 21. A control system for an automotive vehicle comprising:
a navigation system comprising a global positioning system and detecting a ramp, said navigation system generating a navigation signal comprising navigation data and map data; a controller electrically coupled to said navigation system, said controller in response to said navigation signal adjusts the speed of the automotive vehicle.
- 22. A system as in claim 21 further comprising:
a yaw rate sensor electrically coupled to said controller and sensing yaw rate of the automotive vehicle, said yaw rate sensor generating a yaw rate signal; a speed sensor electrically coupled to said controller and sensing velocity of the automotive vehicle, said speed sensor generating a speed signal; said controller detecting an exit ramp in response to said yaw rate signal, said speed signal, and said navigation signal and adjusts the speed of the automotive vehicle.
- 23. A system as in claim 21 further comprising:
a radar based lane change detector electrically coupled to the controller, said radar based lane change detector signaling said controller when the automotive vehicle has changed lanes; wherein said controller adjusts the speed of the automotive vehicle in response to said radar based lane change detector.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present invention is related to U.S. patent application Ser. No. ______ (Attorney Docket 199-1941) entitled “Object Detection in Adaptive Cruise Control” filed simultaneously herewith and incorporated by reference herein.