IP Library Granted Patent US 11,472,439
Granted Patent B2
US 11,472,439 · App. 17/101,390 · Granted Oct 18, 2022

Vehicle control system and vehicle control method

Inventors: Takayuki Iwamoto (Shizuoka-ken, JP); Masahiro Harada (Hadano, JP); Ayako Shimizu (Numazu, JP); Akihide Tachibana (Susono, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
B60W60/0015B60W40/072B60W50/0205B60W2050/021B60W2555/00
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Quick Facts
Patent No.
US 11,472,439
App. No.
17/101,390
Granted
Oct 18, 2022
Kind
B2
Abstract

A vehicle control system executes automated driving control that controls automated driving of a vehicle based on driving environment information indicating a driving environment for the vehicle. When a part of functions of the vehicle is failed during the automated driving, the vehicle control system executes emergency stop control that stops the vehicle. In the emergency stop control, the vehicle control system: acquires failure status information being information on the failed part of functions; determines, based on the failure status information and the driving environment information, a target stop position at which even the vehicle with the failed part of functions is able to arrive and stop by the automated driving; and executes the automated driving control such that the vehicle travels toward the target stop position to stop at the target stop position.

Claims (37)

1. A vehicle control system that controls a vehicle, the vehicle control system comprising:

a memory in which driving environment information indicating a driving environment for the vehicle is stored; and

a processor programmed to:

execute automated driving control that controls automated driving of the vehicle based on the driving environment information; and

execute emergency stop control that stops the vehicle, when a part of functions of the vehicle is failed during the automated driving, wherein

in the emergency stop control, the processor is further programmed to:

acquire failure status information being information on the failed part of functions;

determine, based on the failure status information and the driving environment information, a target stop position at which even the vehicle with the failed part of functions is able to arrive and stop by the automated driving; and

execute the automated driving control such that the vehicle travels toward the target stop position to stop at the target stop position,

the driving environment information includes map information,

a stop candidate area being a candidate for an area at which the vehicle is made to stop when a failure occurs in the vehicle is registered in the map information,

the processor determines the target stop position such that the target stop position is included in the stop candidate area registered in the map information,

a priority is set for each stop candidate area,

a high-priority area is the stop candidate area whose priority is a first priority,

a low-priority area is the stop candidate area whose priority is a second priority lower than the first priority,

when both the high-priority area and the low-priority area are qualified to be the target stop position, the processor determines the target stop position such that the target stop position is included in the high-priority area, and

a road curvature in the high-priority area is lower than a road curvature in the low-priority area.

2. The vehicle control system according to claim 1 , wherein

a margin width is a difference between a vehicle width of the vehicle and a road width of a road area through which another vehicle traveling in a same direction as the vehicle is able to pass, and

the margin width in the high-priority area is larger than the margin width in the low-priority area.

3. The vehicle control system according to claim 1 , wherein

the high-priority area and the low-priority area around an intersection change according to a lane in which the vehicle exists before entering the intersection.

4. The vehicle control system according to claim 1 , wherein

the processor is further programmed to:

acquire vehicle performance information indicating a performance of the vehicle with the failed part of functions indicated by the failure status information; and

determine, based on the performance of the vehicle and the driving environment information, the target stop position at which the vehicle with the failed part of functions is able to arrive and stop by the automated driving.

5. A vehicle control method that controls a vehicle, the vehicle control method comprising:

executing automated driving control that controls automated driving of the vehicle based on driving environment information indicating a driving environment for the vehicle, the driving environment information includes map information;

executing emergency stop control that stops the vehicle, when a part of functions of the vehicle is failed during the automated driving, wherein

executing the emergency stop control includes:

acquiring failure status information being information on the failed part of functions;

determining, based on the failure status information and the driving environment information, a target stop position at which even the vehicle with the failed part of functions is able to arrive and stop by the automated driving; and

executing the automated driving control such that the vehicle travels toward the target stop position to stop at the target stop position,

determining the target stop position such that the target stop position is included in a stop candidate area registered in the map information, the stop candidate area being a candidate for an area at which the vehicle is made to stop when a failure occurs in the vehicle is registered in the map information,

setting a priority for each stop candidate area, a high-priority area is the stop candidate area whose priority is a first priority, and a low-priority area is the stop candidate area whose priority is a second priority lower than the first priority, and

when both the high-priority area and the low-priority area are qualified to be the target stop position, determining the target stop position such that the target stop position is included in the high-priority area,

wherein a road curvature in the high-priority area is lower than a road curvature in the low-priority area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 23, 2020
From: IWAMOTO, TAKAYUKI; HARADA, MASAHIRO; SHIMIZU, AYAKO; TACHIBANA, AKIHIDE
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 054445/0623 →
Priority Claims (1)
JP JP2019-215639 · Nov 28, 2019 · national
Continuity (1)
Related Publication 20210163039A1 · Jun 3, 2021