The slip ratio control is an important research topic in in-wheel-motored electric vehicles (EVs). Traditional control methods are usually designed for some specified modes. Therefore, the optimal slip ratio control cannot be achieved while vehicles work under various modes. In order to achieve the optimal slip ratio control, a novel model predictive controller-based optimal slip ratio control system (MPC-OSRCS) is proposed. The MPC-OSRCS includes three parts, a road surface adhesion coefficient identifier, an operation mode recognizer, and an MPC based-optimal slip ratio control. The current working road surface is identified by the road surface adhesion coefficient identifier, and a modified recursive Bayes theorem is used to compute the ...
In this paper, a new SMC (Sliding Mode Control) method with MP (Model Predictive Control) integral a...
This article is concerned with the design of braking control systems for electric vehicles endowed w...
Electronic vehicle dynamics systems are expected to evolve in the future as more and more automobile...
The real-time change of tire-road friction coefficient is one of the important factors that influenc...
This paper presents an integrated traction control strategy (ITCS) for distributed drive electric ve...
In this paper, a new model predictive PID controller design method for the slip suppression control ...
Abstract This study proposes and experimentally validates an optimal integrated system to control th...
Under complicated situations, such as the low slippery road surface and split-μ road surface, tracti...
To improve the driving performance and the stability of the electric vehicle, a novel acceleration s...
Copyright © 2013 Shaobo Li, Tohru Kawabe. This is an open access article distributed under the Creat...
Abstract This paper proposes a fast model predictive control all...
In this paper, a 2DOF (two degrees of freedom) PID (Proportional-Integral-Derivative) controller bas...
This paper presents an integrated traction control strategy (ITCS) for distributed drive electric ve...
A vehicle with a four-channel anti-lock braking system (ABS) has poor safety and stability when brak...
Vehicle stability control should accurately interpret the driving intention and ensure that the actu...
In this paper, a new SMC (Sliding Mode Control) method with MP (Model Predictive Control) integral a...
This article is concerned with the design of braking control systems for electric vehicles endowed w...
Electronic vehicle dynamics systems are expected to evolve in the future as more and more automobile...
The real-time change of tire-road friction coefficient is one of the important factors that influenc...
This paper presents an integrated traction control strategy (ITCS) for distributed drive electric ve...
In this paper, a new model predictive PID controller design method for the slip suppression control ...
Abstract This study proposes and experimentally validates an optimal integrated system to control th...
Under complicated situations, such as the low slippery road surface and split-μ road surface, tracti...
To improve the driving performance and the stability of the electric vehicle, a novel acceleration s...
Copyright © 2013 Shaobo Li, Tohru Kawabe. This is an open access article distributed under the Creat...
Abstract This paper proposes a fast model predictive control all...
In this paper, a 2DOF (two degrees of freedom) PID (Proportional-Integral-Derivative) controller bas...
This paper presents an integrated traction control strategy (ITCS) for distributed drive electric ve...
A vehicle with a four-channel anti-lock braking system (ABS) has poor safety and stability when brak...
Vehicle stability control should accurately interpret the driving intention and ensure that the actu...
In this paper, a new SMC (Sliding Mode Control) method with MP (Model Predictive Control) integral a...
This article is concerned with the design of braking control systems for electric vehicles endowed w...
Electronic vehicle dynamics systems are expected to evolve in the future as more and more automobile...