IP Library Granted Patent US 12,091,082
Granted Patent B2
US 12,091,082 · App. 17/141,374 · Granted Sep 17, 2024

Lane keeping control apparatus for vehicle

Inventor: Sho Tomoi (Tokyo, JP)
Assignee: SUBARU CORPORATION
B62D15/025B62D5/0463B62D15/021
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Quick Facts
Patent No.
US 12,091,082
App. No.
17/141,374
Granted
Sep 17, 2024
Kind
B2
Abstract

A lane keeping control apparatus for a vehicle includes a controller. The controller is configured to set a target path on which the vehicle is to travel, calculate a control amount for an electric power steering motor, on a basis of at least an amount of deviation from the target path, control the vehicle such that the vehicle travels on the target path. The controller is configured to compare a response speed of an actual steering angle of the vehicle relative to a target steering angle for travelling on the target path and a set response speed, determine a gain of a current value for driving the electric power steering motor such that the response speed is equal to the set response speed, and update the determined gain.

Claims (29)

1. A lane keeping control apparatus for a vehicle, the lane keeping control apparatus comprising a controller configured to execute a lane keep control processing, the lane keep control processing including

setting a target path on which the vehicle is to travel,

calculating a control amount for an electric power steering motor, on a basis of at least an amount of deviation from the target path and a feedback gain stored in a memory, for controlling the vehicle traveling on the target path, and

determining a first current value of the electric power steering motor for controlling the vehicle traveling on the target path, wherein the first current value causes a steering angle of the vehicle to be a target steering angle for travelling on the target path with a set response speed equal to a response speed at a time of shipment, wherein

the electric power steering motor is configured to apply a torque to an electronic power steering device, the electronic power steering device comprises a pinion shaft comprising a pinion gear and a rack shaft comprising a rack gear, the pinion gear and the rack gear are disposed in sliding contact with each other at sliding contact portions,

the controller is configured to execute, based on determining that the lane keep control processing is executed, a processing repeatedly, the processing including:

reading the feedback gain from the memory;

driving the electric power steering motor with a second current value determined based on multiplying the calculated control amount by the read feedback gain to cause the steering angle of the vehicle to be the target steering angle for travelling on the target path with a response speed so that the amount of deviation from the target path of the vehicle that meanders across the target travel path is smaller when driving the electric power steering motor with the second current value than when driving the electric power steering motor with the calculated control amount;

comparing the response speed with the set response speed which is equal to the response speed at the time of shipment;

in response to the response speed being greater than the set response speed,

determining a corrected feedback gain for driving the electric power steering motor such that the response speed is equal to the set response speed, and

correcting the read feedback gain with the determined corrected feedback gain such that the response speed is equal to the set response speed, resulting in the response speed being equal to the response speed at the time of shipment;

calculating a curvature of a travel path for the vehicle based on image information on a front of the vehicle received from a recognition device including a camera of the vehicle;

correcting the corrected feedback gain in accordance with a change in the curvature of the travel path for the vehicle; and

updating the feedback gain stored in the memory with the corrected feedback gain.

2. The lane keeping control apparatus according to claim 1 , wherein an amount of correction of the gain decreases as the change in curvature increases.

3. A lane keeping control apparatus for a vehicle, the lane keeping control apparatus comprising circuitry configured to execute a lane keep control processing, the lane keep control processing including

setting a target path on which the vehicle is to travel,

calculating a control amount for an electric power steering motor, on a basis of at least an amount of deviation from the target path and a feedback gain stored in a memory, for controlling the vehicle traveling on the target path, and

determining a first current value of the electric power steering motor for controlling the vehicle traveling on the target path, wherein the first current value causes a steering angle of the vehicle to be a target steering angle for travelling on the target path with a set response speed equal to a response speed at a time of shipment, wherein

the electric power steering motor is configured to apply a torque to an electronic power steering device, the electronic power steering device comprises a pinion shaft comprising a pinion gear and a rack shaft comprising a rack gear, the pinion gear and the rack gear are disposed in sliding contact with each other at sliding contact portions,

the circuitry is configured to execute, based on determining that the lane keep control processing is executed, a processing repeatedly, the processing including:

reading the feedback gain stored in the memory;

driving the electric power steering motor with a second current value determined based on multiplying the calculated control amount by the read feedback gain to cause the steering angle of the vehicle to be the target steering angle for travelling on the target path with a response speed so that the amount of deviation from the target path of the vehicle that meanders across the target travel path is smaller when driving the electric power steering motor with the second current value than when driving the electric power steering motor with the calculated control amount;

comparing a response speed with the set response speed which is equal to the response speed at the time of shipment;

in response to the response speed being greater than the set response speed, determining a corrected feedback gain for driving the electric power steering motor such that the response speed is equal to the set response speed, resulting in the response speed being equal to the response speed at the time of shipment;

calculating a curvature of a travel path for the vehicle based on image information on a front of the vehicle received from a recognition device including a camera of the vehicle;

correcting the corrected feedback gain in accordance with a change in the curvature of the travel path for the vehicle;

updating the feedback gain stored in the memory with the corrected feedback gain.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2021
From: TOMOI, SHO
To: SUBARU CORPORATION
Reel/Frame 054810/0162 →
Priority Claims (1)
JP 2020-024427 · Feb 17, 2020 · national
Continuity (1)
Related Publication 20210253166A1 · Aug 19, 2021
Cited By (1)
US 12,358,557