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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >A Discrete Nonlinear Tracking-Differentiator and Its Application in Vibration Suppression of Maglev System
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A Discrete Nonlinear Tracking-Differentiator and Its Application in Vibration Suppression of Maglev System

机译:离散的非线性跟踪 - 微分器及其在Maglev系统的振动抑制中的应用

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Vibration of the maglev train levitation system is harmful to riding comfort and safety. The signal processing method is effective in vibration control. In this paper, a novel kind of second-order nonlinear tracking differentiator is proposed and applied to suppress the vibration phenomenon. The switching curves of the second-order discrete time optimal control system are presented by the isochronous region method. A synthetic function is acquired depending on the cases whether a point in the phase plane can reach the switching curves within one sample step. The discrete form of tracking differentiator is constructed based on the position relationship between the state point and the characteristic curves. Numerical simulation shows that this discrete tracking differentiator can quickly track an input signal without overshoot and chattering and can produce a good differential signal. A test in a maglev test bench also demonstrates the effectiveness of the tracking differentiator in the suppression of the track-train vibration.
机译:Maglev火车悬浮系统的振动对骑行舒适和安全有害。信号处理方法在振动控制方面是有效的。本文提出并应用了一种新型二阶非线性跟踪区分器以抑制振动现象。二阶离散时间最佳控制系统的切换曲线由等时区域方法呈现。根据壳体在一个样本步骤内的相位平面中的点可以达到切换曲线的情况,获取合成功能。基于状态点与特征曲线之间的位置关系构建离散形式的跟踪微分器。数值模拟表明,该离散跟踪鉴别器可以快速跟踪没有过冲和抖动的输入信号,并且可以产生良好的差分信号。 Maglev测试台中的测试还证明了跟踪区分器在抑制轨道列车振动中的有效性。

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