IP Library Granted Patent US 9,643,600
Granted Patent B2
US 9,643,600 · App. 14/893,680 · Granted May 9, 2017

Vehicle control system

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Quick Facts
Patent No.
US 9,643,600
App. No.
14/893,680
Granted
May 9, 2017
Kind
B2
Abstract

To provide a vehicle control system capable of promptly achieving a travel motion along a travel path. A yaw moment control amount is imparted according to a traveling-direction virtual line extending from an ego vehicle in a traveling direction and a formed angle between the traveling-direction virtual line and a travel-path defining line.

Claims (31)

1. A vehicle control system comprising:

a travel-path defining line recognition unit configured to recognize a travel-path defining line of a travel path from information about an area in a traveling direction of a vehicle to which the vehicle control system is mounted;

a virtual travel-path defining line recognition unit configured to recognize a virtual travel-path defining line which is a tangent of the travel-path defining line at an intersection point of a traveling-direction virtual line and the travel-path defining line; and

a vehicle attitude stabilizing control unit configured to recognize the traveling-direction virtual line extending from the vehicle in the traveling direction and impart such a yaw moment control amount that the vehicle travels along the travel-path defining line according to an angle formed between the traveling-direction virtual line and the travel-path defining line or between the traveling-direction virtual line and the virtual travel-path defining line,

wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount based on an evaluation function using the angle formed between the traveling-direction virtual line and the virtual travel-path defining line, and a curvature of a turning radius of the vehicle.

2. The vehicle control system of claim 1 , wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount through brake control which applies a braking torque to wheels.

3. The vehicle control system of claim 1 , wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount through steering turning control which controls a steering turning angle.

4. The vehicle control system of claim 1 , wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount when the evaluation function becomes equal to or larger than a predetermined value.

5. The vehicle control system of claim 1 , wherein

there is provided an intersect time calculation unit configured to calculate an intersect time elapsed to reach the intersection point of the traveling-direction virtual line and the travel-path defining line on the basis of vehicle speed; and

the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount when the intersect time becomes shorter than predetermined time.

6. The vehicle control system of claim 1 , wherein

the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount through brake control which applies a braking torque to wheels when vehicle speed is equal to or higher than a predetermined value, and impart the yaw moment control amount through steering turning control which controls a steering turning angle when the vehicle speed is lower than a predetermined value.

7. The vehicle control system of claim 1 , wherein

the vehicle attitude stabilizing control unit is configured to increase the yaw moment control amount to be imparted through brake control which applies a braking torque to wheels as vehicle speed is increased, and increase the yaw moment control amount to be imparted through steering turning control which controls a steering turning angle as the vehicle speed is decreased.

8. The vehicle control system of claim 1 , wherein the travel-path defining line recognition unit is a stereo camera which measures distance using disparity which occurs when a plurality of cameras take images of the same object.

9. A vehicle control system comprising:

a stereo camera configured to measure distance using disparity which occurs when a plurality of cameras take images of the same object, and recognize a travel-path defining line of a travel path;

a virtual travel-path defining line recognition unit configured to recognize a virtual travel-path defining line which is a tangent of the travel-path defining line at an intersection point of a traveling-direction virtual line and the travel-path defining line; and

a vehicle attitude stabilizing control unit configured to recognize the traveling-direction virtual line extending, in a traveling direction, from a vehicle to which the vehicle control system is mounted, and impart such a yaw moment control amount that the vehicle travels along the travel-path defining line according to an angle formed between the traveling-direction virtual line and the travel-path defining line or between the traveling-direction virtual line and the virtual travel-path defining line,

wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount based on an evaluation function using the angle formed between the traveling-direction virtual line and the virtual travel-path defining line, and a curvature of a turning radius of the vehicle.

10. The vehicle control system of claim 9 , wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount through brake control which applies a braking torque to wheels.

11. The vehicle control system of claim 10 , wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount through steering turning control which controls a steering turning angle.

12. The vehicle control system of claim 9 , wherein the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount when the evaluation function becomes equal to or larger than a predetermined value.

13. The vehicle control system of claim 9 , wherein

there is provided an intersect time calculation unit configured to calculate an intersect time elapsed to reach the intersection point of the traveling-direction virtual line and the travel-path defining line on the basis of vehicle speed; and

the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount when the intersect time becomes shorter than predetermined time.

14. The vehicle control system of claim 9 , wherein

the vehicle attitude stabilizing control unit is configured to impart the yaw moment control amount through brake control which applies a braking torque to wheels when vehicle speed is equal to or higher than a predetermined value, and impart the yaw moment control amount through steering turning control which controls a steering turning angle when the vehicle speed is lower than the predetermined value.

15. The vehicle control system of claim 9 , wherein

the vehicle attitude stabilizing control unit is configured to increase the yaw moment control amount to be imparted through brake control which applies a braking torque to wheels as vehicle speed is increased, and increase the yaw moment control amount to be imparted through steering turning control which controls a steering turning angle as the vehicle speed is decreased.

Assignments (2)
CHANGE OF NAME Recorded Mar 25, 2021
From: HITACHI AUTOMOTIVE SYSTEMS, LTD.
To: HITACHI ASTEMO, LTD.
Reel/Frame 056299/0447 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2015
From: TAKAHASHI, AKIRA; KUBO, JUN; SASAKI, MITSUO
To: HITACHI AUTOMOTIVE SYSTEMS, LTD.
Reel/Frame 037132/0849 →