IP Library Granted Patent US 8,040,084
Granted Patent B2
US 8,040,084 · App. 12/162,554 · Granted Oct 18, 2011

Vehicle, control method thereof and braking device

Assignee: Toyota Jidosha Kabushiki Kaisha
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Quick Facts
Patent No.
US 8,040,084
App. No.
12/162,554
Granted
Oct 18, 2011
Kind
B2
Abstract

During braking, lower limits are set based on an input limit of a battery and a brake pedal position, and the set lower limits limit regenerative torques output from motors. This prevents an output of an excessive braking force and torque shock caused by a hydraulic brake being not able to follow sudden changes in the regenerative torques output from the motors when the vehicle speed is reduced.

Claims (36)

1. A vehicle, comprising:

a braking force application unit that applies a braking force by hydraulic actuation;

at least one motor that can output a regenerative torque;

an electric storage unit that can transfer electric power to and from said motor;

a rotation speed detection unit that detects a rotation speed of said motor;

an input limit setting unit that sets an input limit as maximum permissible electric power in charging said electric storage unit based on a state of said electric storage unit;

a braking request detection unit that detects a braking request requested by the vehicle;

a lower limit regenerative torque setting unit that sets a lower limit regenerative torque as a lower limit value of a regenerative torque output from said motor so that the absolute value thereof becomes smaller as an absolute value of said detected braking request becomes larger and an absolute value thereof becomes smaller as an absolute value of said set input limit becomes smaller; and

a braking control unit that controls said motor and said braking force application unit so that the regenerative torque is output from said motor within a range of a rated torque of said motor based on said detected rotation speed of the motor, an input limit torque based on said set input limit, said input limit torque is a torque whose absolute value becomes larger as said detected rotation speed of the motor becomes smaller and changes more significantly with the change of the rotation speed of the motor as said detected rotation speed of the motor becomes smaller and said set lower limit regenerative torque, and a braking force according to said detected braking request is applied to the vehicle,

wherein the braking control unit is configured to control said motor and said braking force application unit so that when the rotation speed detected by said rotation speed detection unit is lower than a predetermined rotation speed, no regenerative torque is output from said motor, and the braking force according to said detected braking request is applied to the vehicle.

2. The vehicle according to claim 1 , wherein said lower limit regenerative torque setting unit sets the lower limit regenerative torque so that an absolute value thereof becomes smaller as an absolute value of said set input limit becomes smaller.

3. The vehicle according to claim 1 , wherein said lower limit regenerative torque setting unit sets the lower limit regenerative torque so that the absolute value thereof becomes smaller as an absolute value of said detected braking request becomes larger.

4. The vehicle according to claim 1 , wherein said braking control unit controls said motor so that the largest regenerative torque within the range of the rated torque of said motor and said set lower limit regenerative torque is output from said motor, and controls said braking force application unit so that a braking force of a difference between a driving force according to said detected braking request and a braking force by the regenerative torque output from said motor is applied from said braking force application unit.

5. The vehicle according to claim 1 , wherein said braking control unit controls said motor and said braking force application unit so that when the rotation speed detected by said rotation speed detection unit is said predetermined rotation speed or higher, the regenerative torque is output from said motor within the range of the rated torque of said motor, an input limit torque based on said set input limit, and said set lower limit regenerative torque, and the braking force according to said detected braking request is applied to the vehicle.

6. The vehicle according to claim 1 , wherein said motor is a plurality of motors connected to different axles.

7. The vehicle according to claim 6 , wherein said lower limit regenerative torque setting unit sets a lower limit regenerative torque for each of said plurality of motors,

said braking control unit performs control so that a regenerative torque is output from each of said plurality of motors within a range of a rated torque of each of said plurality of motors, said set input limit, and a lower limit regenerative torque set for each of said plurality of motors.

8. The vehicle according to claim 1 , wherein said braking request detection unit detects physical quantities relating to an operation of a brake pedal by an operator.

9. A braking device that applies a braking force to a mobile unit, comprising:

a braking force application unit that applies a braking force by hydraulic actuation;

at least one motor that can output a regenerative torque;

an electric storage unit that can transfer electric power to and from said motor;

a rotation speed detection unit that detects a rotation speed of said motor;

an input limit setting unit that sets an input limit as maximum permissible electric power in charging said electric storage unit based on a state of said electric storage unit;

a braking request detection unit that detects a braking request requested by the mobile unit;

a lower limit regenerative torque setting unit that sets a lower limit regenerative torque as a lower limit value of a regenerative torque output from said motor so that the absolute value thereof becomes smaller as an absolute value of said detected braking request becomes larger and an absolute value thereof becomes smaller as an absolute value of said set input limit becomes smaller; and

a braking control unit that controls said motor and said braking force application unit so that the regenerative torque is output from said motor within a range of a rated torque of said motor based on said detected rotation speed of the motor, an input limit torque based on said set input limit, said input limit torque is a torque whose absolute value becomes larger as said detected rotation speed of the motor becomes smaller and changes more significantly with the change of the rotation speed of the motor as said detected rotation speed of the motor becomes smaller and said set lower limit regenerative torque, and a braking force according to said detected braking request is applied to the mobile unit,

wherein the braking control unit is configured to control said motor and said braking force application unit so that when the rotation speed detected by said rotation speed detection unit is lower than a predetermined rotation speed, no regenerative torque is output from said motor, and the braking force according to said detected braking request is applied to the vehicle.

10. A control method of a vehicle comprising: a braking force application unit that applies a braking force by hydraulic actuation; at least one motor that can output a regenerative torque; and an electric storage unit that can transfer electric power to and from said motor, said control method comprising the steps of:

setting a lower limit regenerative torque as a lower limit value of the regenerative torque output from said motor based on a braking request requested by the vehicle, and an input limit as maximum permissible electric power in charging said electric storage unit;

controlling said motor and said braking force application unit so that the regenerative torque is output from said motor within a range of a rated torque of said motor based on a rotation speed of said motor, an input limit torque based on said set input limit, said input limit torque is a torque whose absolute value becomes larger as the rotation speed of the motor becomes smaller and changes more significantly with the change of the rotation speed of the motor as the rotation speed of the motor becomes smaller and said set lower limit regenerative torque, and a braking force according to said braking request is applied to the vehicle; and

controlling said motor and said braking force application unit so that when the rotation speed of the motor is lower than a predetermined rotation speed, no regenerative torque is output from said motor, and the braking force according to said braking request is applied to the vehicle.

11. The control method of a vehicle according to claim 10 , sets the lower limit regenerative torque so that an absolute value thereof becomes smaller as an absolute value of said input limit becomes smaller.

12. The control method of a vehicle according to claim 10 , sets the lower limit regenerative torque so that the absolute value thereof becomes smaller as an absolute value of said braking request becomes larger.

13. The control method of a vehicle according to claim 10 , controls said motor so that the largest regenerative torque within the range of the rated torque of said motor and said set lower limit regenerative torque is output from said motor, and controls said braking force application unit so that a braking force of a difference between a driving force according to said braking request and a braking force by the regenerative torque output from said motor is applied from said braking force application unit.

14. The control method of a vehicle according to claim 10 , wherein said control method controls said motor and said braking force application unit so that when the rotation speed is said predetermined rotation speed or higher, the regenerative torque is output from said motor within the range of the rated torque of said motor, an input limit torque based on said input limit, and said set lower limit regenerative torque, and the braking force according to said braking request is applied to the vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 29, 2008
From: MUTA, KOICHIRO
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 021308/0618 →
Priority Claims (1)
JP 2006-022457 · Jan 31, 2006 · national
Continuity (1)
Related Publication 20090051304A1 · Feb 26, 2009