An electronic stability control (ESC) based on torque distribution is proposed for an eight in-wheel motor-independent drive electric vehicle (8WIDEV). The proposed ESC is extremely suitable for the independent driving vehicle to enhance its handling stability performance. The vehicle model is established based on a prototype 8WIDEV. A hierarchical control strategy, which includes a reference state generation controller, an upper-level vehicle controller, and a lower-level optimal control allocation controller, is utilized in the ESC. The reference state generation controller is used to obtain the ideal reference vehicle state. The upper-level vehicle controller is structured based on sliding mode control, which obtains the generalized obje...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
© 2017 IEEE. In this paper, a direct yaw-moment control (DYC) scheme is proposed for a four-wheel-in...
Different electronic stability control (ESC) techniques for electric vehicles with four in-wheel ele...
In this paper, an optimal control strategy for a four-wheel-independently-actuated electric vehicle ...
In this paper, a continuous steering stability controller based on an energy-saving torque distribut...
In order to solve the steering stability problem of a special four-wheel independent electric vehicl...
Recently, electric vehicles are becoming increasingly the better option in reducing environmental po...
In this paper, a novel robust rolling stability control (RSC) based on electronic stability program ...
This paper shows how control allocation with an optimization formulation can be used as an on-line e...
This paper shows how control allocation with an optimization formulation can be used as an on-line e...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
© 2017 IEEE. In this paper, a direct yaw-moment control (DYC) scheme is proposed for a four-wheel-in...
Different electronic stability control (ESC) techniques for electric vehicles with four in-wheel ele...
In this paper, an optimal control strategy for a four-wheel-independently-actuated electric vehicle ...
In this paper, a continuous steering stability controller based on an energy-saving torque distribut...
In order to solve the steering stability problem of a special four-wheel independent electric vehicl...
Recently, electric vehicles are becoming increasingly the better option in reducing environmental po...
In this paper, a novel robust rolling stability control (RSC) based on electronic stability program ...
This paper shows how control allocation with an optimization formulation can be used as an on-line e...
This paper shows how control allocation with an optimization formulation can be used as an on-line e...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
Full electric vehicles (FEVs) are becoming more and more common. For these vehicles, a widely adopte...
© 2017 IEEE. In this paper, a direct yaw-moment control (DYC) scheme is proposed for a four-wheel-in...