IP Library › Granted Patent US 8,751,130
Granted Patent B2
US 8,751,130 · App. 13/824,595 · Granted Jun 10, 2014

Vehicle travel control apparatus

Inventors: Toshihisa Nihei (Toyota, JP); Takashi Nonaka (Ichinomiya, JP)
Assignees: Toyota Jidosha Kabushiki Kaisha; Advics Co., Ltd.
B60T8/17554B60T2201/16B60T8/1755
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Quick Facts
Patent No.
US 8,751,130
App. No.
13/824,595
Granted
Jun 10, 2014
Kind
B2
Abstract

A vehicle travel control apparatus executes turning facilitation control that controls wheel longitudinal force such that the longitudinal force of a turning path inner side wheel becomes smaller than the longitudinal force of a turning path outer side wheel, and vehicle dynamics control that controls wheel longitudinal force so as to stabilize the turning motion of the vehicle. The vehicle speed range in which to permit the turning facilitation control is lower than the vehicle speed range in which to permit the vehicle dynamics control.

Claims (28)

1. A vehicle travel control apparatus comprising:

circuitry configured to execute a turning facilitation control that controls wheel longitudinal force such that a longitudinal force of a turning path inner side wheel becomes smaller than a longitudinal force of a turning path outer side wheel and a vehicle dynamics control that controls wheel longitudinal force so as to stabilize turning motion of the vehicle, wherein

a vehicle speed range in which to permit the turning facilitation control is lower than a vehicle speed range in which to permit the vehicle dynamics control.

2. The vehicle travel control apparatus according to claim 1 , wherein the vehicle dynamics control includes an oversteer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the oversteer reduction control.

3. The vehicle travel control apparatus according to claim 1 , wherein:

the vehicle dynamics control includes an oversteer reduction control,

an upper limit value of the vehicle speed range in which to permit the turning facilitation control is higher than a lower limit value of a vehicle speed range in which to permit the oversteer reduction control, and

an lower limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the oversteer reduction control.

4. The vehicle travel control apparatus according to claim 3 , wherein the turning facilitation control is not started even when a condition for starting the turning facilitation control is satisfied during execution of the oversteer reduction control if a speed of the vehicle is in a vehicle speed range between the lower limit value of the vehicle speed range in which to permit the oversteer reduction control and the upper limit value of the vehicle speed range in which to permit the turning facilitation control.

5. The vehicle travel control apparatus according to claim 3 , wherein the turning facilitation control is discontinued when a condition for starting the oversteer reduction control is satisfied during execution of the turning facilitation control if a speed of the vehicle is in a vehicle speed range between the lower limit value of the vehicle speed range in which to permit the oversteer reduction control and the upper limit value of the vehicle speed range in which to permit the turning facilitation control.

6. The vehicle travel control apparatus according to claim 2 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

7. The vehicle travel control apparatus according to claim 3 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

8. The vehicle travel control apparatus according to claim 4 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

9. The vehicle travel control apparatus according to claim 5 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

10. A circuitry implemented method comprising;

executing a turning facilitation control that controls wheel longitudinal force such that a longitudinal force of a turning path inner side wheel becomes smaller than a longitudinal force of a turning path outer side wheel and a vehicle dynamics control that controls wheel longitudinal force so as to stabilize turning motion of the vehicle, wherein

a vehicle speed range in which to permit the turning facilitation control is lower than a vehicle speed range in which to permit the vehicle dynamics control.

11. The circuitry implemented method according to claim 10 , wherein the vehicle dynamics control includes an oversteer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the oversteer reduction control.

12. The circuitry implemented method according to claim 10 , wherein:

the vehicle dynamics control includes an oversteer reduction control,

an upper limit value of the vehicle speed range in which to permit the turning facilitation control is higher than a lower limit value of a vehicle speed range in which to permit the oversteer reduction control, and

an lower limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the oversteer reduction control.

13. The circuitry implemented method according to claim 12 , wherein the turning facilitation control is not started even when a condition for starting the turning facilitation control is satisfied during execution of the oversteer reduction control if a speed of the vehicle is in a vehicle speed range between the lower limit value of the vehicle speed range in which to permit the oversteer reduction control and the upper limit value of the vehicle speed range in which to permit the turning facilitation control.

14. The circuitry implemented method according to claim 12 , wherein the turning facilitation control is discontinued when a condition for starting the oversteer reduction control is satisfied during execution of the turning facilitation control if a speed of the vehicle is in a vehicle speed range between the lower limit value of the vehicle speed range in which to permit the oversteer reduction control and the upper limit value of the vehicle speed range in which to permit the turning facilitation control.

15. The circuitry implemented method according to claim 11 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

16. The circuitry implemented method according to claim 12 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

17. The circuitry implemented method according to claim 13 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

18. The circuitry implemented method according to claim 14 , wherein the vehicle dynamics control includes an oversteer reduction control and an understeer reduction control, and an upper limit value of the vehicle speed range in which to permit the turning facilitation control is lower than a lower limit value of a vehicle speed range in which to permit the understeer reduction control.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2013
From: NIHEI, TOSHIHISA; NONAKA, TAKASHI
To: TOYOTA JIDOSHA KABUSHIKI KAISHA; ADVICS CO., LTD.
Reel/Frame 030049/0952 →
Priority Claims (1)
JP 2010-212083 · Sep 22, 2010 · national
Continuity (1)
Related Publication 20130179004A1 · Jul 11, 2013