Driving force control apparatus, driving apparatus, and driving force transmission apparatus
A driving force control apparatus for controlling a driving force to be transmitted to a wheel includes a processor. The processor is configured to set, when the wheel is idled, a control amount of the driving force to be transmitted to the wheel based on a vehicle acceleration.
1. A driving force control apparatus for controlling a driving force to be transmitted to a wheel, the driving force control apparatus comprising:
a processor configured to set, when a slipping rate of the wheel is larger than a target value of the slipping rate of the wheel while the wheel is idled, a control amount of the driving force to be transmitted to the wheel based on a vehicle acceleration, wherein:
the processor is configured to set the control amount of the driving force based on a feedforward control amount calculated through feedforward control,
the processor is configured to set, when the wheel is idled, as the feedforward control amount, a smaller one of a vehicle acceleration-associated feedforward control amount that is calculated based on the vehicle acceleration and a command value of the driving force that is calculated based on a vehicle traveling condition,
the processor is configured to calculate the vehicle acceleration-associated feedforward control amount as a product of a difference between a first feedforward control amount based on a longitudinal acceleration in a longitudinal direction of the vehicle and a second feedforward control amount based on a lateral acceleration in a lateral direction of the vehicle, and an estimated value of a road friction coefficient, and
the processor is configured to perform feedback control for the feedforward control amount based on the target value of the slipping rate of the wheel.
2. The driving force control apparatus according to claim 1 , wherein:
the wheel is a rear wheel of a vehicle that is a four-wheel vehicle;
and
the processor is configured to increase the first feedforward control amount as the longitudinal acceleration in the longitudinal direction of the vehicle increases.
3. The driving force control apparatus according to claim 1 , wherein:
the processor is configured to increase the second feedforward control amount as the lateral acceleration in the lateral direction of the vehicle increases.
4. The driving force control apparatus according to claim 1 , wherein:
the wheel is a rear wheel of a vehicle that is a four-wheel vehicle.
5. A driving apparatus, comprising:
an electric motor serving as a drive source of a vehicle;
a driving force transmission mechanism configured to transmit a driving force of the electric motor to a wheel; and
a processor configured to control the electric motor, the processor configured to set, when a slipping rate of the wheel is larger than a target value of the slipping rate of the wheel while the wheel is idled, a control amount of the driving force to be transmitted to the wheel based on a vehicle acceleration, wherein:
the processor is configured to set the control amount of the driving force based on a feedforward control amount calculated through feedforward control,
the processor is configured to set, when the wheel is idled, as the feedforward control amount, a smaller one of a vehicle acceleration-associated feedforward control amount that is calculated based on the vehicle acceleration and a command value of the driving force that is calculated based on a vehicle traveling condition,
the processor is configured to calculate the vehicle acceleration-associated feedforward control amount as a product of a difference between a first feedforward control amount based on a longitudinal acceleration in a longitudinal direction of the vehicle and a second feedforward control amount based on a lateral acceleration in a lateral direction of the vehicle, and an estimated value of a road friction coefficient, and
the processor is configured to perform feedback control for the feedforward control amount based on the target value of the slipping rate of the wheel.
6. A driving force transmission apparatus for transmitting a driving force of a drive source of a vehicle to a wheel, the driving force transmission apparatus comprising:
a clutch configured to adjust the driving force to be transmitted to the wheel; and
a processor configured to control the clutch, the processor configured to set, when a slipping rate of the wheel is larger than a target value of the slipping rate of the wheel while the wheel is idled, a control amount of the driving force to be transmitted to the wheel based on a vehicle acceleration, wherein:
the processor is configured to set the control amount of the driving force based on a feedforward control amount calculated through feedforward control,
the processor is configured to set, when the wheel is idled, as the feedforward control amount, a smaller one of a vehicle acceleration-associated feedforward control amount that is calculated based on the vehicle acceleration and a command value of the driving force that is calculated based on a vehicle traveling condition,
the processor is configured to calculate the vehicle acceleration-associated feedforward control amount as a product of a difference between a first feedforward control amount based on a longitudinal acceleration in a longitudinal direction of the vehicle and a second feedforward control amount based on a lateral acceleration in a lateral direction of the vehicle, and an estimated value of a road friction coefficient, and
the processor is configured to perform feedback control for the feedforward control amount based on the target value of the slipping rate of the wheel.