Min-Max Optimal Control for High-Speed Train Movements with Exogenous Disturbances and Uncertain Parameters

Junfeng Ma, Sha Ma, Tao Peng, W. Gui
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Abstract

This study investigates the min-max optimal control of high-speed train movements considering worst-case exogenous disturbances and uncertain parameters simultaneously. For a high-speed train, each car is modeled as a point mass connected by flexible coupling to track the reference speed profile of the train. Based on the robust model predictive control (RMPC) approach, a min-max optimal control problem is formulated to reduce the energy consumption and tracking errors while satisfying some individual constraints. The desired control inputs can be obtained by solving the min-max optimization problem.
具有外源扰动和参数不确定的高速列车运动的最小-最大最优控制
研究了同时考虑最坏情况外源干扰和不确定参数的高速列车运动的最小-最大最优控制问题。对于高速列车,每个车厢都被建模为一个通过柔性联轴器连接的质点,以跟踪列车的参考速度轮廓。在鲁棒模型预测控制(RMPC)方法的基础上,提出了一个最小-最大最优控制问题,以减少能量消耗和跟踪误差,同时满足一些个体约束。通过求解最小-最大优化问题,可以得到所需的控制输入。
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