IP Library Granted Patent US 11,242,039
Granted Patent B2
US 11,242,039 · App. 16/662,679 · Granted Feb 8, 2022

Braking assistance method and apparatus for vehicle

Inventor: Ryo Takaki (Kariya, JP)
Assignee: DENSO CORPORATION
B60T7/22B60T8/17B60T8/171B60T8/172B60T2201/03B60T2210/32
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Quick Facts
Patent No.
US 11,242,039
App. No.
16/662,679
Granted
Feb 8, 2022
Kind
B2
Abstract

In a vehicle braking assistance apparatus, a detection unit detects a target object in a traveling lane of an own vehicle. A braking assistance level determination unit, which determines a braking assistance level of the own vehicle by a braking device, determines, upon detecting a cut-in vehicle that has changed a travelling course to the travelling lane of the own vehicle using a detection signal from the detection unit, whether the cut-in vehicle is accelerable. The braking assistance level determination unit sets the braking assistance level of the braking to a high value that is higher than a standard value upon determining that the cut-in vehicle is not accelerable.

Claims (37)

1. A vehicle braking assistance apparatus comprising:

a detection unit configured to detect a target object in a traveling lane of an own vehicle; and

a braking assistance level determination unit, for determining a braking assistance level of the own vehicle by a braking device, configured to:

determine, upon detecting a cut-in vehicle that has changed a traveling course to the traveling lane of the own vehicle using a detection signal from the detection unit, whether a preceding vehicle traveling ahead of the cut-in vehicle is present in the traveling lane of the own vehicle using the detection unit;

calculate, when determining that the preceding vehicle is present in the traveling lane of the own vehicle, a relative relationship between the preceding vehicle and the cut-in vehicle using the detection signal from the detection unit, the relative relationship including a distance difference and a relative speed between the preceding vehicle and the cut-in vehicle;

determine whether the cut-in vehicle is accelerable based on the relative relationship between the preceding vehicle and the cut-in vehicle;

determine that the cut-in vehicle is not accelerable upon the relative relationship indicating that the cut-in vehicle is not accelerable; and

set the braking assistance level of the braking of the own vehicle to a high value that is higher than a standard value based on the cut-in vehicle not being accelerable.

2. The vehicle braking assistance apparatus according to claim 1 , wherein:

the braking assistance level determination unit is configured to:

calculate, as the relative relationship, a time-to-collision that indicates a time until the cut-in vehicle reaches the preceding vehicle in accordance with the distance difference and relative speed between the preceding vehicle and the cut-in vehicle; and

determine that the cut-in vehicle is not accelerable upon the calculated time-to-collision being equal to or less than a predetermined first threshold.

3. The vehicle braking assistance apparatus according to claim 2 , wherein: the braking assistance level determination unit is configured to:

determine that the cut-in vehicle is accelerable upon the calculated time-to-collision being more than the predetermined first threshold; and

set the braking assistance level of the own vehicle to the standard value.

4. The vehicle braking assistance apparatus according to claim 2 , wherein:

the braking assistance level determination unit is configured to detect the cut-in vehicle upon detecting that a time-to-collision to an additional vehicle traveling ahead of the own vehicle decreases rapidly.

5. The vehicle braking assistance apparatus according to claim 1 , wherein: the braking assistance level determination unit is configured to:

determine that the cut-in vehicle is accelerable upon no preceding vehicles being detected; and

set the braking assistance level of the own vehicle to the standard value.

6. The vehicle braking assistance apparatus according to claim 1 , wherein: the braking assistance level determination unit is configured to:

determine whether a positional difference between a position of an additional vehicle in a lateral direction thereof and a position of a preceding vehicle in the lateral direction thereof is smaller than a cut-in determination threshold, the preceding vehicle traveling ahead of the cut-in vehicle on the traveling lane of the own vehicle, the additional vehicle being located behind the preceding vehicle and ahead of the own vehicle; and

detect the additional vehicle as the cut-in vehicle upon determining that positional difference is smaller than the cut-in determination threshold.

7. The vehicle braking assistance apparatus according to claim 1 , further comprising:

a braking assistance control unit configured to activate the braking device based on the braking assistance level for avoiding a collision between the own vehicle and the cut-in vehicle.

8. The vehicle braking assistance apparatus according to claim 1 , wherein:

the detection unit comprises at least one of a camera and LIDAR.

9. The vehicle braking assistance apparatus according to claim 1 , wherein:

the high value of the braking assistance level represents a value of a braking assistance level for achieving a braking force that enables the own vehicle to be stopped with a high deceleration than the standard value of the braking assistance level.

10. A braking assistance method for a vehicle, comprising:

detecting a target object in a traveling lane of an own vehicle;

detecting a cut-in vehicle that has changed a traveling course to a traveling lane of an own vehicle;

determining, upon detecting the cut-in vehicle that has changed the traveling course to the traveling lane of the own vehicle, whether a preceding vehicle traveling ahead of the cut-in vehicle is present in the traveling lane of the own vehicle;

calculating, when determining that the preceding vehicle is present in the traveling lane of the own vehicle, a relative relationship between the preceding vehicle and the cut-in vehicle, the relative relationship including a distance difference and a relative speed between the preceding vehicle and the cut-in vehicle;

determining whether the cut-in vehicle in accelerable based on the relative relationship between the preceding vehicle and the cut-in vehicle;

determining that the cut-in vehicle is not accelerable upon the relative relationship indicating that the cut-in vehicle is not accelerable; and

setting a braking assistance level of the braking of the own vehicle to a high value that is higher than a standard value based on the cut-in vehicle not being accelerable.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2019
From: TAKAKI, RYO
To: DENSO CORPORATION
Reel/Frame 051165/0938 →
Priority Claims (1)
JP JP2017-085794 · Apr 25, 2017 · national
Continuity (2)
Continuation PCTJP2018015078 · Apr 10, 2018
Related Publication 20200055495A1 · Feb 20, 2020
Cited By (2)
US 12,188,530 US 12,522,220