Angle demand control of steer-by-wire system by disturbance estimation–based generalized predictive control approach

Author:

Xu Ziang1,Shi Qin1,Wei Yujiang1,Zheng Xinxin2,Huang Chunrong2,He Lin2ORCID

Affiliation:

1. School of Automotive and Transportation Engineering, HeFei University of Technology, HeFei, China

2. Laboratory of Automotive Intelligence and Electrification, HeFei University of Technology, HeFei, China

Abstract

In this article, a disturbance estimation–based robust generalized predictive control approach is proposed for angle demand control of a steer-by-wire system. It consists of a generalized predictive controller and a nonlinear disturbance observer. First, the nonlinear disturbance observer is used to estimate the effects of the lumped disturbances, including model uncertainties, unmodeled dynamics, and external disturbances. Second, the estimate of the nonlinear disturbance observer is integrated into the generalized predictive controller design for front-wheel angle output prediction. Then, an explicit analytical form of the disturbance estimation–based robust generalized predictive controller is derived. In addition, rigorous stability analysis proves that the closed-loop system under the proposed control is stable. Finally, the developed control approach has been downloaded into a steering control unit and tested in real-world conditions using a vehicle test bench to fully realize steering by wire in engineering practice. Extensive simulations and experiments have been performed, and results show that the proposed control approach outperforms the comparative controllers regarding disturbance rejection, robust tracking performance under model uncertainties, and disturbances.

Funder

Foundation of State Key Laboratory of Automotive Simulation and Control

Key Research and Development Program of Jiangsu Province

Innovation Project of New Energy Vehicle and Intelligent Connected Vehicle of Anhui Province

Natural Science Foundation of Anhui Province

Publisher

SAGE Publications

Subject

Mechanical Engineering,Control and Systems Engineering

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