IP Library Granted Patent US 12,179,746
Granted Patent B2
US 12,179,746 · App. 17/950,551 · Granted Dec 31, 2024

Vehicle collision avoidance assist apparatus and vehicle collision avoidance assist program

Inventors: Takahiro Kuno (Toyota, JP); Yuta Otsuka (Tokyo, JP)
Assignees: TOYOTA JIDOSHA KABUSHIKI KAISHA; DENSO CORPORATION
B60W30/09B60W30/0953B60W30/0956B60W30/18145B60W30/18159B60W2520/14B60W2540/18B60W2554/4029B60W2554/4041B60W2554/801
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Quick Facts
Patent No.
US 12,179,746
App. No.
17/950,551
Granted
Dec 31, 2024
Kind
B2
Abstract

A vehicle collision avoidance assist apparatus keeps stopping a collision avoidance control to avoid a collision of an own vehicle with an object ahead of the own vehicle when the own vehicle turns, a predetermined condition is satisfied, and a collision condition is satisfied. While the own vehicle turns, the apparatus acquires an own vehicle turning angle which is an angle which the own vehicle has turned about a turning center from when the own vehicle starts turning and change the predetermined condition, depending on the own vehicle turning angle.

Claims (34)

1. A vehicle collision avoidance assist apparatus comprising an electronic control unit configured to:

prevent execution of a collision avoidance control to avoid a collision of an own vehicle with an object ahead of the own vehicle when the own vehicle turns, a predetermined condition is satisfied, and a collision condition is satisfied,

the predetermined condition being a condition relating to a steered state of the own vehicle, and

the collision condition being a condition that the own vehicle is going to collide with the object; and

execute the collision avoidance control when the own vehicle turns, the predetermined condition is not satisfied, and the collision condition is satisfied,

wherein the electronic control unit is configured to:

while the own vehicle turns,

acquire an own vehicle turning angle which is an angle which the own vehicle has turned about a turning center from when the own vehicle starts turning; and

change the predetermined condition, depending on the own vehicle turning angle.

2. The vehicle collision avoidance assist apparatus as set forth in claim 1 ,

wherein the electronic control unit is configured to acquire as the steered state, at least one parameter representing the steered state with a positive or negative sign, and

wherein the predetermined condition is a condition which is satisfied in response to acquiring the parameter with a sign opposite to the sign at a point of time when the own vehicle starts to turn.

3. The vehicle collision avoidance assist apparatus as set forth in claim 1 ,

wherein the electronic control unit is configured to acquire as the steered state, a reversed steering operation applied to the own vehicle, and

wherein the predetermined condition is a condition which is satisfied when the own vehicle turning angle is equal to or smaller than a predetermined own vehicle turning angle threshold, and the reversed steering operation is carried out after the own vehicle starts to turn.

4. The vehicle collision avoidance assist apparatus as set forth in claim 1 ,

wherein the electronic control unit is configured to acquire as the steered state of the own vehicle, a steering angle changing speed with a positive or negative sign which corresponds to a changing amount per unit time of the steered angle of the own vehicle, and

wherein the predetermined condition is a condition which is satisfied when an absolute value of the steering angle changing speed is equal to or greater than a predetermined steering angle changing speed threshold.

5. The vehicle collision avoidance assist apparatus as set forth in claim 1 ,

wherein the electronic control unit is configured to:

predict a turning route of an own vehicle and a moving route of an object ahead of the own vehicle when the own vehicle turns;

acquire a predicted reaching time which is a time predicted to be taken for the own vehicle to reach the moving route of the object; and

acquire an object position which is a position of the object with respect to the own vehicle when the own vehicle reaches the moving route of the object,

wherein the collision condition becomes satisfied when (i) the turning route of the own vehicle crosses the moving route of the object, (ii) the predicted reaching time is equal to or smaller than a predetermined predicted reaching time, and (iii) the object position is within a width of the own vehicle.

6. The vehicle collision avoidance assist apparatus as set forth in claim 5 , wherein the electronic control unit is configured to predict the turning route of the own vehicle, based on a yaw rate of the own vehicle.

7. A non-transitory computer-readable medium containing a vehicle collision avoidance assist program programmed to:

prevent execution of a collision avoidance control to avoid a collision of an own vehicle with an object ahead of the own vehicle when the own vehicle turns, a predetermined condition is satisfied, and a collision condition is satisfied,

the predetermined condition being a condition relating to a steered state of the own vehicle, and

the collision condition being a condition that the own vehicle is going to collide with the object; and

execute the collision avoidance control when the own vehicle turns, the predetermined condition is not satisfied, and the collision condition is satisfied,

wherein the vehicle collision avoidance assist program is programmed to:

while the own vehicle turns,

acquire an own vehicle turning angle which is an angle which the own vehicle has turned about a turning center from when the own vehicle starts turning; and

change the predetermined condition, depending on the own vehicle turning angle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2022
From: KUNO, TAKAHIRO; OTSUKA, YUTA
To: TOYOTA JIDOSHA KABUSHIKI KAISHA; DENSO CORPORATION
Reel/Frame 061185/0135 →
Priority Claims (1)
JP 2021-156441 · Sep 27, 2021 · national
Continuity (1)
Related Publication 20230100834A1 · Mar 30, 2023