基于导数的并联前馈控制鲁棒性分析

Keyvan Noury, Bingen Yang
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引用次数: 0

摘要

在本文中,作者描述了他们以前实现的并联前馈补偿器配置的鲁棒性,适用于非最小相位(NMP)系统。在以前的论文中,我们已经证明了并联前馈补偿器是如何轻松稳定通用NMP系统的。然而,稳健性分析被推迟到以后的研究。因此,本文研究了所提出的结构在存在噪声和干扰时的鲁棒性。这将表明,在试图测试鲁棒性目的时,具有导数的并联前馈补偿(PFCD)方法的稳定性背后的主要思想很方便。最后,通过一个仿真实例说明了该方法的基本原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robustness Analysis of Parallel Feedforward Control With Derivative (PFCD) Method
In this paper, the authors represent the robustness capabilities of their previously implemented parallel feedforward compensator configuration, applicable to nonminimum-phase (NMP) systems. In the previous papers, it was shown how a paralleled feedforward compensator can stabilize a general purpose NMP system with ease. However, the robustness analysis was postponed for a later study. Thus, herein, the robustness capabilities of the proposed configuration in the presence of noise and disturbance are investigated. It will be shown that the main idea behind the stability of the parallel feedforward compensation with derivative (PFCD) methodology comes handy when trying to test for the robustness purposes. At the end, a simulation example is brought to represent the ballparks of the methodology.
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