This paper describes a new algorithm that independently manages braking and driving forces to improve the lateral stability of a vehicle equipped with independent drive motors on all wheels. In a similar way to previous research, the proposed algorithm controls yaw rate to improve lateral stability. However, unlike in previous research that only used differential braking, our algorithm controls both driving and braking forces on all four wheels independently to achieve the target yaw rate. The core contribution of this paper is the distribution logic that determines the braking and driving forces to apply at each wheel. To develop this distribution logic, we introduce the concept of yaw moment contour line. Using this concept, the optimal d...
© 2017 IEEE. In this paper, a direct yaw-moment control (DYC) scheme is proposed for a four-wheel-in...
Electric vehicles with independently controlled drivetrains allow torque-vectoring, which enhances a...
This thesis is concerned with electronic stability of an all-wheel drive electric vehicle with indep...
[Abstract] Electric vehicles (EVs) are gaining attention because they are environmentally friendly. ...
Four-wheel independent drive electric vehicle was used as the research object to discuss the lateral...
The integrated longitudinal and lateral dynamic motion control is important for four wheel independe...
This paper presents the integrated motion control method for an electric vehicle (EV) equipped with ...
To solve the problem of lateral instability of the vehicle caused by insufficient lateral force of t...
Torque distribution control is a key technique for four-wheel independent-drive electric vehicles be...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
In-wheel motored powertrain on electric vehicles has more potential in maneuverability and active sa...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
In this paper, an optimal control strategy for a four-wheel-independently-actuated electric vehicle ...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
© 2017 IEEE. In this paper, a direct yaw-moment control (DYC) scheme is proposed for a four-wheel-in...
Electric vehicles with independently controlled drivetrains allow torque-vectoring, which enhances a...
This thesis is concerned with electronic stability of an all-wheel drive electric vehicle with indep...
[Abstract] Electric vehicles (EVs) are gaining attention because they are environmentally friendly. ...
Four-wheel independent drive electric vehicle was used as the research object to discuss the lateral...
The integrated longitudinal and lateral dynamic motion control is important for four wheel independe...
This paper presents the integrated motion control method for an electric vehicle (EV) equipped with ...
To solve the problem of lateral instability of the vehicle caused by insufficient lateral force of t...
Torque distribution control is a key technique for four-wheel independent-drive electric vehicles be...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
In-wheel motored powertrain on electric vehicles has more potential in maneuverability and active sa...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
In this paper, an optimal control strategy for a four-wheel-independently-actuated electric vehicle ...
Fully electric vehicles with individually controlled drivetrains can provide a high degree of drivab...
© 2017 IEEE. In this paper, a direct yaw-moment control (DYC) scheme is proposed for a four-wheel-in...
Electric vehicles with independently controlled drivetrains allow torque-vectoring, which enhances a...
This thesis is concerned with electronic stability of an all-wheel drive electric vehicle with indep...