The torque coordination control during mode transition is a very important task for hybrid electric vehicle (HEV) with a clutch serving as the key enabling actuator element. Poor coordination will deteriorate the drivability of the driver and lead to excessive wearing to the clutch friction plates. In this paper, a novel torque coordination control strategy for a single-shaft parallel hybrid electric vehicle is presented to coordinate the motor torque, engine torque, and clutch torque so that the seamless mode switching can be achieved. Different to the existing model predictive control (MPC) methods, only one model predictive controller is needed and the clutch torque is taken as an optimized variable rather than a known parameter. Further...
In the years to come, Connected and Automated Vehicles (CAVs) are expected to substantially improve ...
Today’s several algorithms are currently managed by the control units in passenger cars to deliver h...
Abstract – In this paper, a motor control algorithm for performing a mode change without an integrat...
Torque coordination control significantly affects the mode transition quality during the mode transi...
Hybrid vehicles usually have several braking systems, and braking mode switches are significant even...
For parallel hybrid electric vehicles (HEVs), the clutch serves as a vital enabling actuator element...
During the mode transition from the pure electric propulsion mode to the hybrid propulsion mode, clu...
In the years to come, Connected and Automated Vehicles (CAVs) are expected to substantially improve ...
Today's vehicles are quite complex as regards the automatic control of their operation. Indeed, seve...
In this paper, Model Predictive Control (MPC) framework is exploited to synthesize a predictive cont...
Abstract Two-speed clutchless automated manual transmission (AMT) has been widely implemented in ele...
In this article a control strategy for an induction machine (IM) based electric variable transmissio...
With the recent emergence of electric drivetrains, a faster and energy efficient braking actuator - ...
This chapter reviews the developments and configurations of hybrid electrical vehicles. A classic mo...
In the years to come, Connected and Automated Vehicles (CAVs) are expected to substantially improve ...
Today’s several algorithms are currently managed by the control units in passenger cars to deliver h...
Abstract – In this paper, a motor control algorithm for performing a mode change without an integrat...
Torque coordination control significantly affects the mode transition quality during the mode transi...
Hybrid vehicles usually have several braking systems, and braking mode switches are significant even...
For parallel hybrid electric vehicles (HEVs), the clutch serves as a vital enabling actuator element...
During the mode transition from the pure electric propulsion mode to the hybrid propulsion mode, clu...
In the years to come, Connected and Automated Vehicles (CAVs) are expected to substantially improve ...
Today's vehicles are quite complex as regards the automatic control of their operation. Indeed, seve...
In this paper, Model Predictive Control (MPC) framework is exploited to synthesize a predictive cont...
Abstract Two-speed clutchless automated manual transmission (AMT) has been widely implemented in ele...
In this article a control strategy for an induction machine (IM) based electric variable transmissio...
With the recent emergence of electric drivetrains, a faster and energy efficient braking actuator - ...
This chapter reviews the developments and configurations of hybrid electrical vehicles. A classic mo...
In the years to come, Connected and Automated Vehicles (CAVs) are expected to substantially improve ...
Today’s several algorithms are currently managed by the control units in passenger cars to deliver h...
Abstract – In this paper, a motor control algorithm for performing a mode change without an integrat...