Regenerative torque shifter
View Patent ↗The regenerative torque shifter is a system for electric/hybrid electric vehicles that includes a driver-operated control device mounted in the vehicle and a control unit linked to a motor controller. The driver sets a level of regenerative braking desired by manipulating the control device. Based on output from the control device, the control unit directs the motor controller to apply a corresponding level of regenerative braking action by varying the amount of load seen by the motor.
1. A regenerative torque shifter system for a vehicle having a powertrain with an electric motor, the system comprising:
a motor controller adapted for electrical connection to the electric motor;
at least one energy storage device;
an energy recovery bus electrically connected to the at least one energy storage device;
a control unit electrically connected to a torque shifter, the motor controller, and the energy recovery bus, the control unit having a circuit for adjusting the motor controller to apply a negative torque to regulate regenerative braking by adjusting a load applied by the energy recovery bus responsive to operation of the torque shifter by a driver of the vehicle, whereby the torque shifter is adapted to be utilized to apply the negative torque to regulate the regenerative braking without requiring use of a transmission.
2. The regenerative torque shifter system according to claim 1 , further comprising a hysteresis circuit for inhibiting abrupt changes in motor RPM when rapid changes are applied to the torque shift controller.
3. The regenerative torque shifter system according to claim 1 , further comprising:
an energy delivery bus electrically connected to the at least one energy storage device to the motor controller to supply power to the electric motor; and
a converter electrically connected to the motor controller and the energy recovery bus, the converter supplying power to the energy recovery bus.
4. The regenerative torque shifter system according to claim 1 , wherein the torque shifter comprises at least one transducer, the at least one transducer sensing a driver parameter, and means for encoding the driver parameter into an electrical signal for input into the control unit.
5. The regenerative torque shifter system according to claim 1 , wherein said circuit for adjusting the motor controller is configured for increasing the regenerative braking level of the system based on the activation duration of the torque shifter.
6. The regenerative torque shifter system according to claim 1 , wherein said circuit for adjusting the motor controller is configured for increasing the regenerative braking level of the system based on a number of activation cycles of the torque shifter.
7. The regenerative torque shifter system according to claim 1 , wherein the control unit comprises means for applying a mathematical calculation on its inputs, the calculation scaling the input data to achieve a predetermined regenerative braking effect.
8. The regenerative torque shifter system according to claim 1 , further comprising a throttle actuator electrically connected to the control unit.
9. The regenerative torque shifter system according to claim 8 , further comprising a controller area network, the controller area network establishing data communication between the throttle actuator and the control unit.
10. The regenerative torque shifter system according to claim 9 , wherein the controller area network establishes data communication between the at least one energy storage device and the control unit.
11. The regenerative torque shifter system according to claim 1 , wherein the motor controller includes means for generating configurable analog, discrete, and pulse-width modulated (PWM) signals interfacing with the motor and the converter.
12. The regenerative torque shifter system according to claim 1 , wherein said at least one energy source comprises a plurality of battery packs, the system further comprising a charging circuit connected to each of the battery packs, the control unit having a circuit for selectively determining the number of battery packs to be charged and selectively connecting and disconnecting the battery packs to the energy recovery bus, thereby selectively connecting and disconnecting the battery packs to the charging circuit, responsive to driver actuation of the torque shifter in order to vary the load applied to the motor to regulate the level of regenerative braking.
13. The regenerative torque shifter system according to claim 12 , wherein the at least one energy storage device further comprises a battery management system in each core, the battery management system providing integrated charging, monitoring, and autonomous battery management decisions based on current, voltage and temperature measurements within the storage device.