IP Library Granted Patent US 11,186,283
Granted Patent B2
US 11,186,283 · App. 16/466,583 · Granted Nov 30, 2021

Control apparatus for electric vehicle, control system for electric vehicle, and control method for electric vehicle

Inventors: Keisuke Suzuki (Kawasaki, JP); Hitoshi Kobayashi (Machida, JP); Kazuya Takahashi (Sagamihara, JP)
Assignee: Hitachi Astemo, Ltd.
B60W30/18172B60L15/2009B60W10/08B60W40/064B60W2520/263B60W2520/30B60W2710/085
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Quick Facts
Patent No.
US 11,186,283
App. No.
16/466,583
Granted
Nov 30, 2021
Kind
B2
Abstract

Provided is control apparatus for an electric vehicle, which is capable of suppressing simultaneous slip of front and rear wheels. The control apparatus for an electric vehicle controls a front electric motor and a rear electric motor so that a difference between a torque command value of the front electric motor and a torque command value of the rear electric motor is larger than a predetermined value.

Claims (45)

1. A control apparatus for an electric vehicle including a front electric motor which outputs torque to front wheels of a vehicle and a rear electric motor which outputs torque to rear wheels of the vehicle, the control apparatus comprising:

a target torque calculation portion configured to calculate a reference front motor torque command value and a reference rear motor torque command value, which are target torques for the front electric motor and the rear electric motor;

a torque command portion configured to output torque command values to the front electric motor and the rear electric motor; and

a control portion configured to control the front electric motor and the rear electric motor so that a difference between the torque command value of the front electric motor and the torque command value of the rear electric motor is larger than a predetermined value while the torque command values changes, wherein

the control portion increases the difference as a longitudinal gradient of a road surface increases, and

the control portion subjects a low-pass filter processing based on an accelerator pedal position of the vehicle, a brake pedal stroke of the vehicle, the reference front motor torque command value, the reference rear motor torque command value and a longitudinal gradient of a road surface, to thereby makes the difference between the torque command value of the front electric motor and the torque command value of the rear electric motor larger than a predetermined value.

2. The control apparatus for an electric vehicle according to claim 1 ,

wherein the target torque calculation portion calculates reference torque command values based on a preset reference torque distribution ratio of the front electric motor and the rear electric motor, and

wherein the control portion gradually restores the torque command values to the reference torque command values after a change amount of the torque command values becomes smaller than a predetermined value.

3. The control apparatus for an electric vehicle according to claim 1 ,

wherein the target torque calculation portion calculates reference torque command values based on a preset reference torque distribution ratio of the front electric motor and the rear electric motor, and

wherein the control portion increases the difference by changing the reference torque distribution ratio.

4. The control apparatus for an electric vehicle according to claim 3 ,

wherein the control portion controls the front electric motor and the rear electric motor so that the difference is equal to or smaller than a preset value.

5. The control apparatus for an electric vehicle according to claim 1 ,

wherein the control portion controls the front electric motor and the rear electric motor so that the torque command value of the rear electric motor is smaller than the torque command value of the front electric motor.

6. A control method for an electric vehicle including a front electric motor which outputs torque to front wheels of a vehicle and a rear electric motor which outputs torque to rear wheels of the vehicle, the control method comprising:

calculating a reference front motor torque command value and a reference rear motor torque command value, which are target torques for the front electric motor and the rear electric motor;

outputting torque command values to the front electric motor and the rear electric motor; and

controlling the front electric motor and the rear electric motor so that a difference between the torque command value of the front electric motor and the torque command value of the rear electric motor is larger than a predetermined value while the torque command values changes, wherein

the controlling the front electric motor and the rear electric motor includes increasing the difference as a longitudinal gradient of a road surface increases

the controlling the front electric motor and the rear electric motor subjects a low-pass filter processing based on an accelerator pedal position of the vehicle, a brake pedal stroke of the vehicle, the reference front motor torque command value, the reference rear motor torque command value and a longitudinal gradient of a road surface, to thereby makes the difference between the torque command value of the front electric motor and the torque command value of the rear electric motor larger than a predetermined value.

7. The control method for an electric vehicle according to claim 6 ,

wherein the calculating a reference front motor torque command value and a reference rear motor torque command value calculates reference torque command values based on a preset reference torque distribution ratio of the front electric motor and the rear electric motor, and

wherein the controlling the front electric motor and the rear electric motor includes gradually restoring the torque command values to the reference torque command values after a change amount of the torque command values becomes smaller than a predetermined value.

8. The control method for an electric vehicle according to claim 6 ,

wherein the calculating a reference front motor torque command value and a reference rear motor torque command value calculates reference torque command values based on a preset reference torque distribution ratio of the front electric motor and the rear electric motor, and

wherein the controlling the front electric motor and the rear electric motor includes increasing the difference by changing the reference torque distribution ratio.

9. The control method for an electric vehicle according to claim 8 ,

wherein the controlling the front electric motor and the rear electric motor includes controlling the front electric motor and the rear electric motor so that the difference is equal to or smaller than a preset predetermined value.

10. The control method for an electric vehicle according to claim 6 ,

wherein the controlling the front electric motor and the rear electric motor includes controlling the front electric motor and the rear electric motor so that the torque command value of the rear electric motor is smaller than the torque command value of the front electric motor.

11. A control system for an electric vehicle, the control system comprising:

a front electric motor configured to output torque to front wheels of a vehicle;

a rear electric motor configured to output torque to rear wheels of the vehicle; and

a control unit configured to control the front electric motor and the rear electric motor,

wherein the control unit comprises:

a target torque calculation portion configured to calculate a reference front motor torque command value and a reference rear motor torque command value, which are target torques for the front electric motor and the rear electric motor;

a torque command portion configured to output torque command values to the front electric motor and the rear electric motor; and

a control portion configured to control the front electric motor and the rear electric motor so that a difference between the torque command value of the front electric motor and the torque command value of the rear electric motor is larger than a predetermined value while the torque command values changes, wherein

the control portion increases the difference as a longitudinal gradient of a road surface increases, and

the control portion subjects a low-pass filter processing based on an accelerator pedal position of the vehicle, a brake pedal stroke of the vehicle, the reference front motor torque command value, the reference rear motor torque command value and a longitudinal gradient of a road surface, to thereby makes the difference between the torque command value of the front electric motor and the torque command value of the rear electric motor larger than a predetermined value.

12. The control system for an electric vehicle according to claim 11 ,

wherein target torque calculation portion calculates reference torque command values based on a preset reference torque distribution ratio of the front electric motor and the rear electric motor, and

wherein the control portion gradually restores the torque command values to the reference torque command values after a change amount of the torque command values becomes smaller than a predetermined value.

Assignments (2)
CHANGE OF NAME Recorded Mar 25, 2021
From: HITACHI AUTOMOTIVE SYSTEMS, LTD.
To: HITACHI ASTEMO, LTD.
Reel/Frame 056299/0447 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2019
From: SUZUKI, KEISUKE; KOBAYASHI, HITOSHI; TAKAHASHI, KAZUYA
To: HITACHI AUTOMOTIVE SYSTEMS, LTD.
Reel/Frame 049372/0954 →