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Stability and robustness analysis of cyclic pseudo-downsampled iterative learning control

机译:循环伪降采样迭代学习控制的稳定性和鲁棒性分析

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摘要

Cyclic pseudo-downsampled iterative learning control (ILC) has shown advantages to achieve good learning performance for trajectories containing high-frequency components and has been verified on industrial robot application. This scheme is a multirate ILC in nature and downsamples the fast rate signals (with a sampling period T ) to slow rate signals (with a sampling period mT) with a ratio m. Then ILC is carried out on the downsampled signals and interpolates its output to a fast rate signal. For the next iteration, ILC scheme downsamples the signals with the same ratio m but at different sampling points with a time shift T. This process is repeated on the iteration axis so that ILC updates the input of all the sampling points once every m cycles. By experiments [Zhang, B., Wang, D., Ye, Y., Zhou, K. and Wang, Y. (2009) ‘Cyclic Pseudo-downsampled Iterative Learning Control for High Performance Tracking’, Control Engineering Practice, 17, 957–965], this scheme has been shown effective and comparisons with other relevant schemes demonstrate its superior performance. In this article, this cyclic pseudo-downsampled ILC scheme is examined analytically and proved mathematically to be stable and robust. Extensions and insights are also established based on the theoretical developments and simulation verification. pseudo-downsampled ILC scheme.
机译:循环伪降采样迭代学习控制(ILC)已显示出对包含高频分量的轨迹实现良好学习性能的优势,并已在工业机器人应用中得到验证。该方案本质上是多速率ILC,并且以比率m将快速速率信号(具有采样周期T)下采样为慢速信号(具有采样周期mT)。然后,对下采样的信号执行ILC,并将其输出内插为快速信号。对于下一次迭代,ILC方案对具有相同比率m但在不同采样点处具有时间偏移T的信号进行下采样。此过程在迭代轴上重复进行,以便ILC每m个周期更新一次所有采样点的输入。通过实验[Zhang,B.,Wang,D.,Ye,Y.,Zhou,K. and Wang,Y.(2009)“用于高性能跟踪的循环伪降采样迭代学习控制”,《控制工程实践》,第17页, [957–965],该方案已被证明是有效的,并且与其他相关方案的比较证明了其优越的性能。在本文中,对该循环伪下采样ILC方案进行了分析检查,并在数学上证明了该方法的稳定性和鲁棒性。还根据理论发展和仿真验证建立了扩展和见解。伪下采样ILC方案。

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