Powertrain for a hybrid vehicle with all-wheel drive capability and method for controlling wheel slip
First Claim
1. A method for controlling power distribution to front traction wheels and to rear traction wheels in a hybrid-electric powertrain for an all-wheel drive vehicle using measured traction wheel speed information, the powertrain including an engine, a generator, an electric motor and a geared transmission, the method comprising:
- transferring incrementally decreased power to a slipping traction wheel while transferring incrementally increased power to a non-slipping traction wheel, whereby the total power distributed to the traction wheels remains unchanged;
the step of transferring incrementally decreased power and incrementally increased power to the traction wheels comprising the step of;
increasing engine torque and decreasing engine speed when the front traction wheels slip, the torque of the electric motor during front wheel slip being equal to torque at the front wheels less a computed incremental electric motor torque.
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Abstract
A hybrid-electric powertrain and control method for a vehicle having forward traction wheels and rearward traction wheels in an all-wheel drive configuration. An engine and an electric motor deliver power through delivery paths to the traction wheels. The power delivery paths may have multiple ratio gearing so that more power can be delivered mechanically to improve powertrain performance and to allow the electric motor size to be reduced. The powertrain may include a controller for automatically balancing power distribution to the forward and rearward traction wheels to avoid wheel slip.
62 Citations
2 Claims
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1. A method for controlling power distribution to front traction wheels and to rear traction wheels in a hybrid-electric powertrain for an all-wheel drive vehicle using measured traction wheel speed information, the powertrain including an engine, a generator, an electric motor and a geared transmission, the method comprising:
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transferring incrementally decreased power to a slipping traction wheel while transferring incrementally increased power to a non-slipping traction wheel, whereby the total power distributed to the traction wheels remains unchanged; the step of transferring incrementally decreased power and incrementally increased power to the traction wheels comprising the step of; increasing engine torque and decreasing engine speed when the front traction wheels slip, the torque of the electric motor during front wheel slip being equal to torque at the front wheels less a computed incremental electric motor torque.
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2. A method for controlling power distribution to front traction wheels and to rear traction wheels in a hybrid-electric powertrain for an all-wheel drive vehicle using measured traction wheel speed information, the powertrain including an engine, a generator, an electric motor and a geared transmission, the method comprising:
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transferring incrementally decreased power to a slipping traction wheel while transferring incrementally increased power to a non-slipping traction wheel, whereby the total power distributed to the traction wheels remains unchanged; the step of transferring incrementally decreased power and incrementally increased power to the traction wheels comprising the step of; decreasing engine torque and increasing engine speed when the rear traction wheels slip, the torque of the electric motor during rear wheel slip being equal to torque at the front wheels plus a computed incremental electric motor torque.
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Specification