IP Library › Granted Patent US 11,383,714
Granted Patent B2
US 11,383,714 · App. 16/922,028 · Granted Jul 12, 2022

Vehicle control device, vehicle control method, and storage medium

Inventors: Ayumu Horiba (Wako, JP); Tadahiko Kanoh (Wako, JP); Katsuya Yashiro (Wako, JP); Chihiro Oguro (Wako, JP); Nozomu Hirosawa (Wako, JP); Toru Kokaki (Wako, JP); Daichi Kato (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
B60W30/18163B60W40/04B60W2552/05B60W2554/4042B60W2554/4044
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Quick Facts
Patent No.
US 11,383,714
App. No.
16/922,028
Granted
Jul 12, 2022
Kind
B2
Abstract

A vehicle control device includes a driving controller configured to control a speed and steering of a vehicle to perform an automatic lane change, in which the driving controller limits the automatic lane change when it is detected that the vehicle is in a first area having a length of a first distance in a longitudinal direction of a road with a starting point of a specific road structure set as a reference or in a second area having a length of a second distance in the longitudinal direction of the road with an end point of the specific road structure set as a reference on the basis of information of at least one of an external recognition result and map information.

Claims (30)

1. A vehicle control device comprising:

a driving controller configured to control a speed and steering of a vehicle to perform an automatic lane change,

wherein the driving controller limits the automatic lane change when it is detected that the vehicle is in a first area having a length of a first distance in a longitudinal direction of a road with a starting point of a specific road structure set as a reference or in a second area having a length of a second distance in the longitudinal direction of the road with an end point of the specific road structure set as a reference on the basis of information of at least one of an external recognition result and map information,

wherein the driving controller performs the automatic lane change from a host traveling lane to an adjacent lane when overtaking of a preceding vehicle that travels on the same lane as the vehicle is performed, and then the automatic lane change is performed from the adjacent lane to the host traveling lane, and

wherein the driving controller permits the automatic lane change when it is determined that the automatic lane change from the adjacent lane related to the overtaking to the host traveling lane can be completed before the vehicle reaches the second area after the vehicle passes through the first area.

2. The vehicle control device according to claim 1 ,

wherein the driving controller permits the automatic lane change before the vehicle reaches the second area after the vehicle passes through the first area, and performs the automatic lane change from the adjacent lane to the host traveling lane after the vehicle passes through the second area instead of performing the automatic lane change from the adjacent lane to the host traveling lane before the vehicle passes through the second area when it is determined that the automatic lane change from the adjacent lane to the host traveling lane cannot be completed due to a situation change after an automatic lane change from the host traveling lane to the adjacent lane is performed.

3. The vehicle control device according to claim 1 ,

wherein the driving controller performs the overtaking when it is determined that the automatic lane change from the adjacent lane related to the overtaking to the host traveling lane can be completed before the vehicle reaches the first area.

4. The vehicle control device according to claim 3 ,

wherein the driving controller performs the automatic lane change from the host traveling lane to the adjacent lane after the vehicle passes through the first area instead of performing the automatic lane change from the host traveling lane to the adjacent lane before the vehicle passes through the first area when it is determined that the automatic lane change from the adjacent lane related to the overtaking to the host traveling lane cannot be completed before the vehicle reaches the first area.

5. The vehicle control device according to claim 3 ,

wherein the driving controller determines whether to perform the overtaking again after the vehicle passes through the first area when it is determined that the automatic lane change from the adjacent lane related to the overtaking to the host traveling lane cannot be completed before the vehicle reaches the first area.

6. The vehicle control device according to claim 1 ,

wherein, when it is detected that the vehicle is in the first area or the second area, the driving controller executes a predetermined type of automatic lane change and does not execute an automatic lane change other than the predetermined type.

7. The vehicle control device according to claim 1 ,

wherein the road structure includes at least a tunnel or a bridge.

8. The vehicle control device according to claim 1 ,

wherein the driving controller changes a length of at least one of the first area and the second area in the longitudinal direction of a road on the basis of specific information indicating a traveling environment in the specific road structure.

9. The vehicle control device according to claim 8 ,

wherein the specific information includes information of at least a part of a length of the specific road structure in the longitudinal direction of the road, an illuminance in the specific road structure, and a gradient or curvature of the road.

10. A vehicle control device comprising:

a driving controller configured to control a speed and steering of a vehicle to perform an automatic lane change,

wherein, when it is detected that a distance from an end point of a first specific road structure to a starting point of a second specific road structure through which the vehicle passes next to the first specific road structure is equal to or less than a predetermined distance on the basis of information of at least one of an external recognition result and map information, the driving controller limits the automatic lane change in a section from the end point of the first specific road structure to the starting point of the second specific road structure.

11. A vehicle control method using a computer comprising:

controlling a speed and steering of a vehicle to perform an automatic lane change; and

limiting the automatic lane change in a section from an end point of a first specific road structure to a starting point of a second specific road structure through which the vehicle passes next to the first specific road structure, when it is detected that a distance from the end point of the first specific road structure to the starting point of the second specific road structure is equal to or less than a predetermined distance on the basis of information of at least one of an external recognition result and map information.

12. A computer-readable non-transitory storage medium that stores a program causing a computer to execute:

processing of controlling a speed and steering of a vehicle to perform an automatic lane change; and

processing of limiting the automatic lane change in a section from an end point of a first specific road structure to a starting point of a second specific road structure through which the vehicle passes next to the first specific road structure, when it is detected that a distance from the end point of the first specific road structure to the starting point of the second specific road structure is equal to or less than a predetermined distance on the basis of information of at least one of an external recognition result and map information.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2020
From: HORIBA, AYUMU; KANOH, TADAHIKO; YASHIRO, KATSUYA; OGURO, CHIHIRO; HIROSAWA, NOZOMU; KOKAKI, TORU; KATO, DAICHI
To: HONDA MOTOR CO., LTD.
Reel/Frame 053292/0619 →
Priority Claims (2)
JP JP2019-127896 · Jul 9, 2019 · national
JP JP2020-091697 · May 26, 2020 · national
Continuity (1)
Related Publication 20210009134A1 · Jan 14, 2021