Regenerative brake control system of electric vehicle
View Patent ↗A regenerative brake control system of an electric motorcycle includes an electric motor, a regeneration adjustment lever, sensors which detect vehicle states, respectively, and a control unit which sets reference regenerative torque according to the vehicle state, and the control unit calculates target torque obtained by compensating the reference regenerative torque based on the detected value of a regeneration amount sensor which detects the operation amount of a regeneration adjustment lever and controls the electric motor such that the electric motor generates regenerative torque.
1. A regenerative brake control system of a vehicle including a front wheel which is a driven wheel and a rear wheel which is a drive wheel, the rear wheel being mounted to a swing arm, the regenerative brake control system comprising:
an electric motor for activating the rear wheel;
a first braking operation member which is operated to mechanically brake the rear wheel;
a regeneration operation member which is provided separately from the first braking operation member and operated to set a regenerative torque of the electric motor;
a detecting device for detecting a vehicle state which is other than a state of the regeneration operation member; and
a control unit which sets a reference regenerative torque according to the vehicle state detected by the detecting device;
wherein the control unit controls the regenerative torque generated in the electric motor such that a value of the regenerative torque generated in the electric motor reaches a target value which is a value of an adjusted regenerative torque obtained by compensating the reference regenerative torque based on an operation amount of the regeneration operation member.
2. The regenerative brake control system according to claim 1 , further comprising:
an acceleration operation member which is operated to set an output torque or an acceleration rate of the vehicle,
wherein the control unit sets the reference regenerative torque when an operation amount of the acceleration operation member is equal to or smaller than a predetermined value, and
wherein the regeneration operation member is provided separately from the acceleration operation member.
3. The regenerative brake control system according to claim 1 , further comprising:
a clutch operation member which is operated to perform switching between a driving power cut-off state and a driving power transmitted state,
wherein the regeneration operation member is provided separately from the clutch operation member.
4. The regenerative brake control system according to claim 1 ,
wherein the regeneration operation member is configured to select one from among a plurality of adjusted regeneration amounts.
5. The regenerative brake control system according to claim 1 ,
wherein the reference regenerative torque is changeable according to a vehicle condition.
6. The regenerative brake control system according to claim 1 ,
wherein the detecting device is a bank angle sensor for detecting a bank angle of the vehicle body of a vehicle, and
wherein the control unit sets the reference regenerative torque based on a detected value of the bank angle sensor.
7. The regenerative brake control system according to claim 1 ,
wherein the control unit controls the regenerative torque generated in the electric motor such that the regenerative torque gradually gets closer to the target value and reaches the target value, when the reference regenerative torque is the target value.
8. The regenerative brake control system according to claim 1 , further comprising:
a second braking operation member which is provided separately from the first braking operation member and operated to mechanically brake the front wheel.
9. The regenerative brake control system according to claim 1 ,
wherein the control unit sets the reference regenerative torque, when the control unit determines that a regeneration condition is satisfied, based on the vehicle state, and controls the regenerative torque generated in the electric motor such that a value of the regenerative torque generated in the electric motor reaches a target value which is a value of the reference regenerative torque, when the regeneration operation member is not operated.
10. The regenerative brake control system according to claim 1 ,
wherein the control unit sets the reference regenerative torque according to a rotational speed of the electric motor which is the vehicle state.
11. The regenerative brake control system according to claim 2 ,
wherein the predetermined value indicates an operation position to which the acceleration operation member is operated by a specified range from a reference position at which the acceleration operation member is not operated.
12. The regenerative brake control system according to claim 1 ,
wherein the vehicle is a motorcycle, and
wherein the reference regenerative torque is set such that the reference regenerative torque decreases as a rotational speed of the electric motor is closer to zero, when a rotational speed range of the electric motor is equal to or less than a first value.
13. The regenerative brake control system according to claim 1 ,
wherein the vehicle is a motorcycle, and
wherein the reference regenerative torque is set such that the reference regenerative torque decreases as a rotational speed of the electric motor increases, when a rotational speed range of the electric motor is equal to or larger than a second value.
14. The regenerative brake control system according to claim 1 ,
wherein the vehicle is a motorcycle, and
wherein the reference regenerative torque is set such that the reference regenerative torque decreases as a rotational speed of the electric motor is closer to zero, when a rotational speed range of the electric motor is equal to or less than a first value, and decreases as the rotational speed of the electric motor increases, when the rotational speed range of the electric motor is equal to or larger than a second value which is larger than the first value.
15. The regenerative brake control system according to claim 1 ,
wherein the control unit compensates the reference regenerative torque based on the operation amount of the regeneration operation member, and irrespective of the vehicle state which is detected by the detecting device and is other than the state of the regeneration operation member, and
wherein the control unit controls the regenerative torque generated in the electric motor such that a value of the regenerative torque generated in the electric motor reaches a target value which is a value of the compensated reference regenerative torque.
16. A regenerative brake control system of a vehicle including a front wheel which is a driven wheel and a rear wheel which is a drive wheel, the rear wheel being mounted to a swing arm, the regenerative brake control system comprising:
an electric motor for activating the rear wheel;
a regeneration operation member operated to set a regenerative torque of the electric motor; and
a detecting device for detecting a vehicle state which is other than a state of the regeneration operation member;
wherein the regenerative brake control system controls the electric motor to generate the regenerative torque based on the vehicle state detected by the detecting device and an operation amount of the regeneration operation member.
17. A regenerative brake control system comprising:
an electric motor for activating a drive wheel;
a regeneration operation member operated to set a regenerative torque of the electric motor;
a detecting device for detecting a vehicle state which is other than a state of the regeneration operation member; and
a control unit which sets a reference regenerative torque according to the vehicle state detected by the detecting device, when the control unit determines that a regeneration condition is satisfied based on the vehicle state;
wherein the control unit controls the regenerative torque generated in the electric motor such that a value of the regenerative torque generated in the electric motor reaches a target value which is a value of the reference regenerative torque, when the regeneration operation member is not operated, and
wherein the control unit controls the regenerative torque generated in the electric motor such that a value of the regenerative torque generated in the electric motor reaches a target value which is a value of an adjusted regenerative torque obtained by compensating the reference regenerative torque based on an operation amount of the regeneration operation member, when the regeneration operation member is operated.