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A Simplified Method for Discrete-Time Repetitive Control Using Model-Less Finite Impulse Response Filter Inversion

机译:基于模型少有限脉冲响应滤波器反演的离散时间重复控制的简化方法

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摘要

Repetitive control (RC) achieves tracking and rejection of periodic exogenous signals by incorporating a model of a periodic signal in the feedback path. To improve the performance, an inverse plant response filter (IPRF) is used. To improve robustness, the periodic signal model is bandwidth-limited. This limitation is largely dependent on the accuracy of the IPRF. A new method is presented for synthesizing the IPRF for discrete-time RC. The method produces filters in a simpler and more consistent manner than existing best-practice methods available in the literature, as the only variable involved is the selection of a windowing function. It is also more efficient in terms of memory and computational complexity than existing methods. Experimental results for a nanopositioning stage show that the proposed method yields the same or better tracking performance compared to existing methods.
机译:重复控制(RC)通过在反馈路径中合并周期信号模型来实现对周期外源信号的跟踪和拒绝。为了提高性能,使用了逆工厂响应滤波器(IPRF)。为了提高鲁棒性,周期性信号模型是带宽受限的。此限制在很大程度上取决于IPRF的准确性。提出了一种用于离散时间RC合成IPRF的新方法。与文献中现有的最佳实践方法相比,该方法以更简单,更一致的方式生成过滤器,因为所涉及的唯一变量是窗口函数的选择。就内存和计算复杂度而言,它比现有方法更有效。纳米定位阶段的实验结果表明,与现有方法相比,该方法可产生相同或更好的跟踪性能。

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