Design of Feedforward-Cascade Controllers for Multivariable Systems

H. Seraji
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引用次数: 1

Abstract

The problems of disturbance decoupling and command matching in linear multivariable systems by means of feedforward and cascade controllers are formulated and solved in a transfer-function setting. It is shown that a necessary and sufficient condition for existence of the required controllers is that the plant zero polynomial is not identically zero and is stable. The required controllers are realized by parallel combination of a proportional-multiple-derivative term and a dynamic term, where the order of the dynamic term does not exceed the number of plant transmission zeros. The control scheme proposed in the paper is composed of a stabilizing feedback controller to enhance system stability, a feedforward controller to achieve disturbance decoupling and a cascade controller to ensure command matching. The three controllers have no effect on each other and can therefore be designed independently. A numerical example is given for illustration.
多变量系统前馈串级控制器的设计
用前馈和级联控制器对线性多变量系统的扰动解耦和命令匹配问题进行了阐述,并在传递函数设置下进行了求解。证明了所需控制器存在的充分必要条件是目标零多项式不同零且稳定。所要求的控制器由比例多导数项和动态项并联组合来实现,其中动态项的阶数不超过植物传输零的个数。本文提出的控制方案由增强系统稳定性的稳定反馈控制器、实现干扰解耦的前馈控制器和保证命令匹配的级联控制器组成。这三个控制器互不影响,因此可以独立设计。给出了一个数值算例进行说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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