控制理论(社会学)
空气动力阻力
牵引(地质)
空气动力学
非线性系统
工程类
电阻式触摸屏
阻力
瞬态(计算机编程)
牵引力控制系统
火车
车辆动力学
计算机科学
控制工程
汽车工程
航空航天工程
人工智能
控制(管理)
物理
操作系统
电气工程
机械工程
量子力学
地图学
地理
作者
Qi Song,Yongduan Song,Tao Tang,Bin Ning
标识
DOI:10.1109/tits.2011.2143409
摘要
The problem of the position and velocity tracking control of high-speed trains becomes interesting yet challenging when simultaneously considering inevitable factors such as the resistive friction and aerodynamic drag forces, the interactive impacts among the vehicles, and the nonlinear traction/braking notches inherent in train systems. In this paper, a multiple point mass with a single-coordinate dynamic model that reflects resistive and transient impacts is derived, and based on this, computationally inexpensive robust adaptive control designs with optimal task distribution for speed and position tracking are proposed under traction/braking nonlinearities and saturation limitations. It is shown that the proposed method is not only robust to external disturbances, aerodynamic resistance, mechanical resistance, and transient impacts but adaptive to unknown system parameters as well. The effectiveness of the proposed approach is also confirmed through numerical simulations.
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