内模原理及其在周期信号跟踪中的应用的新观点

Q. Quan, K. Cai
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引用次数: 11

摘要

周期信号跟踪当然比一般信号跟踪容易。这已经通过应用重复控制理论证明了线性定常系统。然而,由于缺乏相应的理论,对于非线性系统的周期信号跟踪和一般信号跟踪,设计重复控制器的困难是相似或相同的。鉴于此,本文提出了一种关于内模原理的新观点,用来解释当期望信号分别为阶跃信号、正弦信号和一般周期信号时,内模在时域中的工作原理。在此观点的指导下,将周期信号跟踪问题视为非线性系统的稳定性问题。为了证明这种新观点的有效性,提出了一种针对内部动态受周期扰动影响的非最小相位非线性系统的周期信号跟踪设计重复控制器的新方法。仿真实例验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new viewpoint on the internal model principle and its application to periodic signal tracking
Periodic signal tracking is certainly easier than general signal tracking. This has been manifested for linear time-invariant systems by applying theories of repetitive control. However, because of the lack of corresponding theories, the difficulties in designing repetitive controllers for both periodic signal tracking and general signal tracking in nonlinear systems are similar or the same. In view of this, this paper proposes a new viewpoint on the internal model principle which is used to explain how the internal models work in the time domain when the desired signals are step signals, sine signals and general periodic signals, respectively. Guided by this viewpoint, the periodic signal tracking problem is considered as a stability problem for nonlinear systems. To demonstrate the effectiveness of this new viewpoint, a new method of designing repetitive controllers is proposed for periodic signal tracking of non-minimum phase nonlinear systems, where the internal dynamics are subject to a periodic disturbance. A simulation example illustrates the effectiveness of the new method.
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