Robust $H_{\infty}$ Cruise Control of High-Speed Train with Parameter Uncertainties, Time-varying Delays and Disturbance

Zikang Li, Chenjia Ni, Deqing Huang
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引用次数: 1

Abstract

A novel robust $H_{\infty}$ control methodology for highspeed train (HST) with the target of high-precision velocity tracking and operation safety is studied in this paper. The dynamic equation of HST is established based on a multi-particle cascade model connected by flexible couplers, where the delays caused by transmission process, and uncertainties of train mass, stiffness of couplers and aerodynamic drag are considered. The stochastic errors of the line data are defined as operational disturbances. The controller is designed based on Lyapunov theory and linear matrix inequalities (LMIs), under which situation the train track the reference speed trajectory, the relative displacement of couplers is stable at equilibrium state as well as satisfy the prescribed $H_{\infty}$ performance index. Comparative experiments are carried out to demonstrate the effectiveness and robustness of the controller.
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具有参数不确定、时变延迟和扰动的高速列车鲁棒$H_{\infty}$巡航控制
以高速列车的高精度速度跟踪和运行安全为目标,研究了一种新的鲁棒$H_{\infty}$控制方法。基于柔性联轴器连接的多粒子级联模型建立了高速列车的动力学方程,考虑了传动过程的延迟、列车质量、联轴器刚度和气动阻力等不确定性。线数据的随机误差被定义为操作扰动。该控制器基于李雅普诺夫理论和线性矩阵不等式(lmi)进行设计,使列车运行在参考速度轨道上,在平衡状态下耦合器的相对位移稳定,并满足规定的$H_{\infty}$性能指标。对比实验验证了该控制器的有效性和鲁棒性。
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