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A method for designing robust multivariable feedback systems

机译:一种鲁棒的多变量反馈系统的设计方法

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摘要

A new methodology is developed for the synthesis of linear, time-invariant (LTI) controllers for multivariable LTI systems. The aim is to achieve stability and performance robustness of the feedback system in the presence of multiple unstructured uncertainty blocks; i.e., to satisfy a frequency-domain inequality in terms of the structured singular value. The design technique is referred to as the Causality Recovery Methodology (CRM). Starting with an initial (nominally) stabilizing compensator, the CRM produces a closed-loop system whose performance-robustness is at least as good as, and hopefully superior to, that of the original design. The robustness improvement is obtained by solving an infinite-dimensional, convex optimization program. A finite-dimensional implementation of the CRM was developed, and it was applied to a multivariate design example.
机译:开发了一种新的方法,用于综合用于多变量LTI系统的线性,时不变(LTI)控制器。目的是在存在多个非结构化不确定性块的情况下实现反馈系统的稳定性和性能鲁棒性;即,就结构奇异值而言满足频域不等式。该设计技术称为因果恢复方法论(CRM)。从初始的(名义上的)稳定补偿器开始,CRM产生了一个闭环系统,其性能鲁棒性至少与原始设计的鲁棒性一样好,并有望超过其原始设计。通过求解无穷大的凸优化程序,可以提高鲁棒性。开发了CRM的有限维实现,并将其应用于多变量设计示例。

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