IP Library › Granted Patent US 10,990,108
Granted Patent B2
US 10,990,108 · App. 15/868,628 · Granted Apr 27, 2021

Vehicle control system

Inventors: Shuichi Yokokawa (Susono, JP); Koji Taguchi (Atsugi, JP); Yutaka Aoki (Miyoshi, JP); Masateru Amano (Shizuoka-ken, JP)
Assignee: Toyota Jidosha Kabushiki Kaisha
G05D1/0274B60W40/06G01C21/30G05D1/0088G05D1/0278G06K9/00798G06K9/00805B60W2552/05G05D2201/0213
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Quick Facts
Patent No.
US 10,990,108
App. No.
15/868,628
Granted
Apr 27, 2021
Kind
B2
Abstract

A vehicle control system includes a vehicle-mounted sensor, a map database, a control rule database, and an electronic control unit. The electronic control unit is configured to recognize the position of a vehicle on a map; control traveling of the vehicle by using one of a plurality of control rules based on the position of the vehicle on the map, map information, and a detection result of the vehicle-mounted sensor; recognize a road section in the traveling direction of the vehicle based on the position of the vehicle on the map and the map information; specify a control rule used in the road section based on the recognized road section and control rule data; and control traveling of the vehicle in the road section by using the specified control rule.

Claims (46)

1. A vehicle control system comprising:

a vehicle-mounted sensor configured to detect a traveling state of a vehicle and an environment surrounding the vehicle;

a map database configured to store map information;

a control rule database configured to store control rule data in which one of a plurality of control rules set in advance is associated with each road section set in advance on a map;

a vehicle actuator operating range database that stores operating range data in which one of a plurality of vehicle actuator operating ranges set in advance is associated with each road section of the map; and

an electronic control unit configured to

recognize a position of the vehicle on the map,

control traveling of the vehicle by using one of the control rules based on the position of the vehicle on the map, the map information, and a detection result of the vehicle-mounted sensor,

recognize the road section in a traveling direction of the vehicle based on the position of the vehicle on the map and the map information,

specify the control rule used in the road section based on the recognized road section and the control rule data, and control traveling of the vehicle in the road section by using the specified control rule; and

specify the vehicle actuator operating range applied in the road section based on the recognized road section and the operating range data, and control traveling of the vehicle in the road section within a range of the specified vehicle actuator operating range.

2. The vehicle control system according to claim 1 , wherein the electronic control unit is configured to apply an operating range in which a guard value of a steering angle in the operating range of a steering actuator is greater than a reference value, when the road section is a curvature changing section in which a rate of change in a curvature of the road is greater than or equal to a certain value.

3. The vehicle control system according to claim 1 , wherein the electronic control unit is configured to apply an operating range in which a guard value of drive power in the operating range of a throttle actuator is less than a reference value, when the road section is a road section that has a curvature of the road greater than or equal to a certain value and a rate of change in curvature greater than or equal to a certain value and has a wall set on a side of the road.

4. The vehicle control system according to claim 1 , wherein the electronic control unit is configured to apply an operating range in which a guard value of a steering angle, a guard value of steering torque, and a guard value of drive power in the operating range of a steering actuator are greater than a reference value, when the road section is a merging section in which a plurality of lanes merges, or a branch section in which a lane in which the vehicle travels branches into a plurality of lanes.

5. The vehicle control system according to claim 1 , further comprising:

a driving operation detection sensor configured to detect a driving operation performed by a driver of the vehicle; and

a vehicle operating characteristic database configured to store vehicle operating characteristic data in which one of a plurality of vehicle operating characteristics set in advance is associated with each road section on the map,

wherein the electronic control unit is configured to specify the vehicle operating characteristic applied in the road section based on the recognized road section and the vehicle operating characteristic data during the driving operation performed on the vehicle by the driver, and apply the vehicle operating characteristic to traveling of the vehicle in the road section during the driving operation performed on the vehicle by the driver.

6. The vehicle control system according to claim 5 , wherein the electronic control unit is configured to apply, to traveling of the vehicle, a vehicle operating characteristic that decreases a head-turning property of the vehicle from a reference value and increases steering reaction force from a reference value, when the road section is a curvature changing section in which a rate of change in a curvature of the road is greater than or equal to a certain value.

7. The vehicle control system according to claim 5 , wherein the electronic control unit is configured to apply, to traveling of the vehicle, a vehicle operating characteristic that decreases a head-turning property of the vehicle from a reference value and increases steering reaction force from a reference value, when the road section is a curvature changing section or a narrow-width section in which a road width is less than or equal to a certain value.

8. The vehicle control system according to claim 5 , wherein the electronic control unit is configured to apply, to traveling of the vehicle, a vehicle operating characteristic that increases steering reaction force from a reference value and decreases acceleration response from a reference value, when the road section is a rough section in which a road surface roughness degree is greater than or equal to a certain value.

9. The vehicle control system according to claim 1 , further comprising a GPS receiver is configured to receive a signal from a global positioning sensor and measure the position of the vehicle based on the received signal,

wherein the electronic control unit is configured to recognize the position of the vehicle on the map based on the measured position information of the vehicle from the GPS receiver and the map information from the map database.

10. A vehicle control system comprising:

a vehicle-mounted sensor configured to detect a traveling state of a vehicle and an environment surrounding the vehicle;

a map database configured to store map information;

a control rule database configured to store control rule data in which one of a plurality of control rules set in advance is associated with each road section set in advance on a map; and

an electronic control unit configured to

recognize a position of the vehicle on the map,

control traveling of the vehicle by using one of the control rules based on the position of the vehicle on the map, the map information, and a detection result of the vehicle-mounted sensor,

recognize the road section in a traveling direction of the vehicle based on the position of the vehicle on the map and the map information,

specify the control rule used in the road section based on the recognized road section and the control rule data, and control traveling of the vehicle in the road section by using the specified control rule, and

apply an operating range in which a guard value of drive power in the operating range of a throttle actuator is less than a reference value, when the road section is a road section that has a curvature of the road greater than or equal to a certain value and a rate of change in curvature greater than or equal to a certain value and has a wall set on a side of the road.

11. A vehicle control system comprising:

a vehicle-mounted sensor configured to detect a traveling state of a vehicle and an environment surrounding the vehicle;

a map database configured to store map information;

a control rule database configured to store control rule data in which one of a plurality of control rules set in advance is associated with each road section set in advance on a map;

a driving operation detection sensor configured to detect a driving operation performed by a driver of the vehicle;

a vehicle operating characteristic database configured to store vehicle operating characteristic data in which one of a plurality of vehicle operating characteristics set in advance is associated with each road section on the map; and

an electronic control unit configured to

recognize a position of the vehicle on the map,

control traveling of the vehicle by using one of the control rules based on the position of the vehicle on the map, the map information, and a detection result of the vehicle-mounted sensor,

recognize the road section in a traveling direction of the vehicle based on the position of the vehicle on the map and the map information,

specify the control rule used in the road section based on the recognized road section and the control rule data, and control traveling of the vehicle in the road section by using the specified control rule,

specify the vehicle operating characteristic applied in the road section based on the recognized road section and the vehicle operating characteristic data during the driving operation performed on the vehicle by the driver, and apply the vehicle operating characteristic to traveling of the vehicle in the road section during the driving operation performed on the vehicle by the driver, and

apply, to traveling of the vehicle, a vehicle operating characteristic that decreases a head-turning property of the vehicle from a reference value and increases steering reaction force from a reference value, when the road section is a curvature changing section in which a rate of change in a curvature of the road is greater than or equal to a certain value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 11, 2018
From: YOKOKAWA, SHUICHI; TAGUCHI, KOJI; AOKI, YUTAKA; AMANO, MASATERU
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 045058/0833 →
Priority Claims (1)
JP JP2017-005946 · Jan 17, 2017 · national
Continuity (1)
Related Publication 20180203461A1 · Jul 19, 2018