In this paper, a continuous steering stability controller based on an energy-saving torque distribution algorithm is proposed for a four in-wheel-motor independent-drive electric vehicle (4MIDEV) to improve the energy consumption efficiency while maintaining the stability in steering maneuvers. The controller is designed as a hierarchical structure, including the reference model level, the upper-level controller, and the lower-level controller. The upper-level controller adopts the direct yaw moment control (DYC), which is designed to work continuously during the steering maneuver to better ensure steering stability in extreme situations, rather than working only after the vehicle is judged to be unstable. An adaptive two-hierarchy energy-s...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
In order to solve the steering stability problem of a special four-wheel independent electric vehicl...
The improvement of both the stability and economy of the four in-wheel motor drive (4IWMD) electric ...
In this paper, an optimal control strategy for a four-wheel-independently-actuated electric vehicle ...
An electronic stability control (ESC) based on torque distribution is proposed for an eight in-wheel...
A supervisory control strategy, including dynamic control supervisor, handling-stability controller,...
Torque distribution control is a key technique for four-wheel independent-drive electric vehicles be...
This paper describes a new algorithm that independently manages braking and driving forces to improv...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely a...
The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely a...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
In order to solve the steering stability problem of a special four-wheel independent electric vehicl...
The improvement of both the stability and economy of the four in-wheel motor drive (4IWMD) electric ...
In this paper, an optimal control strategy for a four-wheel-independently-actuated electric vehicle ...
An electronic stability control (ESC) based on torque distribution is proposed for an eight in-wheel...
A supervisory control strategy, including dynamic control supervisor, handling-stability controller,...
Torque distribution control is a key technique for four-wheel independent-drive electric vehicles be...
This paper describes a new algorithm that independently manages braking and driving forces to improv...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely a...
The wheel driving torque on four-wheel-drive electric vehicles (4WDEVs) can be modulated precisely a...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...
An active energy-efficient direct yaw moment control (DYC) for in-wheel motor electricvehicles takin...
The safety benefits of torque-vectoring control of electric vehicles with multiple drivetrains are w...