IP Library › Granted Patent US 11,634,121
Granted Patent B2
US 11,634,121 · App. 16/575,692 · Granted Apr 25, 2023

Driving assistance apparatus and driving assistance method for vehicle

Inventors: Yosuke Ito (Kariya, JP); Masayasu Tanase (Toyota, JP); Toshinori Okita (Gotenba, JP)
Assignees: DENSO CORPORATION; TOYOTA JIDOSHA KABUSHIKI KAISHA
B60W30/09B60Q1/1423B60Q9/008B60T7/22B60W10/18B60W10/30B60W2554/00B60W2556/00B60W2710/18B60W2710/30
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Quick Facts
Patent No.
US 11,634,121
App. No.
16/575,692
Granted
Apr 25, 2023
Kind
B2
Abstract

In a driving assistance apparatus, an object detecting unit detects an object that is present in a periphery of an own vehicle based on an image captured by an imaging apparatus provided in the own vehicle. An avoidance control unit performs collision avoidance control for avoiding a collision between the detected object and the own vehicle when a collision between the object and the own vehicle is likely. A light distribution control unit switches irradiated light of an irradiation apparatus provided in the own vehicle between high beam and low beam based on a predetermined switching condition. The light distribution control unit performs switching suppression control to suppress switching of the irradiated light from high beam to low beam while the avoidance control unit is performing collision avoidance control in a case where the irradiated light is set to high beam.

Claims (57)

1. A driving assistance apparatus for a vehicle that includes an irradiation apparatus that irradiates light toward an advancing direction of an own vehicle and an imaging apparatus that images a periphery of the own vehicle, the driving assistance apparatus comprising:

a processor programmed to:

detect an object that is present in the periphery of the own vehicle based on an image captured by the imaging apparatus;

perform collision avoidance control including an automatic brake operation in which a brake apparatus of the vehicle is automatically operated, the collision avoidance control configured to avoid a collision between the object detected and the vehicle when a collision between the object and the vehicle is likely;

determine whether to switch irradiated light of the irradiation apparatus between high beam and low beam based on a predetermined switching condition, the predetermined switching condition including switching of the irradiated light from high beam to low beam in response to an own vehicle speed being equal to or less than a determination value; and

perform switching suppression control to suppress switching of the irradiated light from high beam to low beam, despite the own vehicle speed being equal to or less than the determination value, in response to determining that the automatic brake operation is being performed, wherein the switching suppression control maintains the irradiated light in a state of high beam.

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

the processor is configured to:

determine a type of the object, and

determine whether to suppress switching of the irradiated light from high beam to low beam by switching suppression control, based on the type of the object determined by the processor.

3. The driving assistance apparatus according to claim 2 , wherein:

an irradiation distance of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation distance of the irradiation apparatus at an irradiation distance at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

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

an irradiation direction of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation direction of the irradiation apparatus at an irradiation direction at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

5. The driving assistance apparatus according to claim 1 , wherein:

an irradiation distance of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation distance of the irradiation apparatus at an irradiation distance at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

6. The driving assistance apparatus according to claim 1 , wherein:

an irradiation direction of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation direction of the irradiation apparatus at an irradiation direction at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

7. The driving assistance apparatus according to claim 1 , wherein:

the processor is configured to perform switching suppression control to suppress switching of the irradiated light from high beam to low beam in response to the processor determining that:

a safety apparatus for performing collision avoidance control is being operated; and

automatic brakes of the vehicle are being operated.

8. A driving assistance apparatus for a vehicle that includes an irradiation apparatus that irradiates light toward an advancing direction of an own vehicle and an imaging apparatus that images a periphery of the own vehicle, the driving assistance apparatus comprising:

a processor programmed to:

detect an object that is present in the periphery of the own vehicle based on an image captured by the imaging apparatus;

perform collision avoidance control including at least one of a warning operation in which a warning apparatus is operated and an automatic brake operation in which a brake apparatus of the vehicle is automatically operated when the likelihood of a collision between the object and the vehicle further increases after start of the warning operation;

determine whether to switch irradiated light of the irradiation apparatus between high beam and low beam based on a predetermined switching condition, the predetermined switching condition including switching of the irradiated light from high beam to low beam in response to an own vehicle speed being equal to or less than a determination value; and

perform switching suppression control to suppress switching of the irradiated light from high beam to low beam, despite the own vehicle speed being equal to or less than the determination value, in response to determining that the warning operation is being performed, wherein the switching suppression control maintains the irradiated light in a state of high beam.

9. The driving assistance apparatus according to claim 8 wherein:

an irradiation distance of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation distance of the irradiation apparatus at an irradiation distance at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

10. The driving assistance apparatus according to claim 8 wherein:

an irradiation direction of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation direction of the irradiation apparatus at an irradiation direction at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

11. The driving assistance apparatus according to claim 8 , wherein:

the processor is configured to perform switching suppression control to suppress switching of the irradiated light from high beam to low beam in response to the processor determining that:

a safety apparatus for performing collision avoidance control is being operated; and

automatic brakes of the vehicle are being operated.

12. The driving assistance apparatus according to claim 8 , wherein:

the processor is configured to

determine a type of the object, and

determine whether to suppress switching of the irradiated light from high beam to low beam by switching suppression control, based on the type of the object determined by the processor.

13. The driving assistance apparatus according to claim 12 , wherein:

an irradiation distance of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation distance of the irradiation apparatus at an irradiation distance at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

14. The driving assistance apparatus according to claim 12 , wherein:

an irradiation direction of the irradiation apparatus is variable; and

the processor is configured to hold the irradiation direction of the irradiation apparatus at an irradiation direction at start of operation of collision avoidance control for a state in which the processor is performing collision avoidance control in a case where the irradiated light is set to high beam.

15. A driving assistance method for a vehicle that includes an irradiation apparatus that irradiates light toward an advancing direction of an own vehicle and an imaging apparatus that images a periphery of the own vehicle, the driving assistance method comprising:

detecting an object that is present in the periphery of the own vehicle based on an image captured by the imaging apparatus;

performing collision avoidance control including an automatic brake operation in which a brake apparatus of the vehicle is automatically operated, the collision avoidance control configured to avoid a collision between the detected object and the vehicle when a collision between the object and the vehicle is likely;

determining whether to switch irradiated light of the irradiation apparatus between high beam and low beam based on a predetermined switching condition, the predetermined switching condition including switching of the irradiated light from high beam to low beam in response to an own vehicle speed being equal to or less than a determination value; and

performing switching suppression control to suppress switching of the irradiated light from high beam to low beam, despite the own vehicle speed being equal to or less than the determination value, in response to determining that the automatic brake operation is being performed, wherein the switching suppression control maintains the irradiated light in a state of high beam.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2019
From: ITO, YOSUKE; TANASE, MASAYASU; OKITA, TOSHINORI
To: DENSO CORPORATION; TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 050603/0147 →
Priority Claims (1)
JP 2017-055069 · Mar 21, 2017 · national
Continuity (2)
Continuation PCTJP2018007640 · Feb 28, 2018
Related Publication 20200010079A1 · Jan 9, 2020