The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely and continuously, therefore maneuverability and energy-saving control can be carried out at the same time. In this paper, a wheel torque distribution strategy is developed based on multi-objective optimization to improve vehicle maneuverability and reduce energy consumption. In the high-layer of the presented method, sliding mode control is used to calculate the desired yaw moment due to the model inaccuracy and parameter error. In the low-layer, mathematical programming with the penalty function consisting of the yaw moment control offset, the drive system energy loss and the slip ratio constraint is used for wheel torque control allocation. ...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely a...
The continuous, precise modulation of the driving and braking torque of each wheel is considered to ...
The continuous, precise modulation of the driving and braking torque of each wheel is considered to ...
Vehicle handling in steady-state and transient conditions can be significantly enhanced with the con...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely a...
The continuous, precise modulation of the driving and braking torque of each wheel is considered to ...
The continuous, precise modulation of the driving and braking torque of each wheel is considered to ...
Vehicle handling in steady-state and transient conditions can be significantly enhanced with the con...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
Electric vehicles (EVs) with four individually controlled drivetrains are over-actuated systems, and...
The paper discusses novel computationally efficient torque distribution strategies for electric vehi...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...