Hybrid vehicle drive system and method for fuel reduction during idle
A vehicle drive system for a vehicle including a first prime mover, a first prime mover driven transmission, and a rechargeable power source can be configured for reduced fuel consumption at idle. The vehicle drive system includes an electric motor in direct or indirect mechanical communication with the first prime mover. The control system causes fuel to be eliminated to the first prime mover while the vehicle is stopped and causes the electric motor to rotate the first prime mover at a speed, thereby reducing fuel consumption at idle for the vehicle.
1. A vehicle drive system for a vehicle comprising a first prime mover, a power take off and a first prime mover driven transmission in mechanical communication with the power take off, the vehicle drive system comprising:
a transmission fluid pump;
an additional pump;
an electric motor in direct or indirect mechanical communication with the first prime mover via the power take off; and
a control system configured to cause the electric motor to rotate the first prime mover via the power take off, wherein a flow of transmission fluid is provided, while the first prime mover is not consuming fuel and the vehicle is stationary, due to rotation of the first prime mover by the electric motor when the control system causes the electric motor to rotate the first prime mover, wherein the flow of the transmission fluid is provided by the transmission fluid pump to the power take off during movement of the power take off and wherein the flow of the transmission fluid is increased by the additional pump when the electric motor rotates.
2. The vehicle drive system of claim 1 , wherein the control system is also configured to cause the electric motor to rotate the first prime mover at a speed to operate an air conditioning system when the vehicle is stopped and wherein the control system is configured to receive feedback from the air conditioning system and adjust the speed according to the feedback.
3. The vehicle drive system of claim 1 , wherein an electric motor for the additional pump is independent of the electric motor in direct or indirect mechanical communication with the first prime mover.
4. The vehicle drive system of claim 1 , wherein the additional pump for the transmission fluid is configured to operate when the first prime mover does not provide power and is further configured to continue to operate when the first prime mover consumes the fuel.
5. The vehicle drive system of claim 1 , wherein the power take off comprises a clutch coupled to a transmission.
6. The vehicle drive system of claim 1 , wherein the transmission fluid pump is an internal electric pump.
7. The vehicle drive system of claim 1 , wherein the additional pump is an integrated pump for providing the flow of the transmission fluid.
8. The vehicle drive system of claim 1 , wherein the control system is configured to operate the electric motor in a low speed mode where the first prime mover does not consume fuel as the electric motor rotates the first prime mover.
9. The vehicle drive system of claim 2 , wherein the control system is also configured to increase the speed of the first prime mover to a level above which fuel is provided to the first prime mover, wherein a vehicle electronic control module provides a signal during idle to provide fuel when the speed falls below the level.
10. The vehicle drive system of claim 1 ,
wherein the power take off is configured to be in mechanical communication with the electric motor; and
wherein the transmission fluid is provided via the additional pump through operation of the power take off.
11. The vehicle drive system of claim 1 , wherein the control system is also configured to cause the electric motor to rotate an accessory, the accessory being one of a hydraulic pump, compressor, or another electric motor.