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Analysis and Design of Robust Controllers Using the Interval Diophantine Equation

机译:区间Diophantine方程的鲁棒控制器的分析与设计。

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In this paper the design of pole placement feedback controllers for interval plants is addressed within an Interval Analysis framework. Three main topics connected by the concept of interval Diophantine equation are treated: a relatively straightforward investigation about robust coprimeness of interval polynomials, a reliable computing approach for the design of pole placement controllers in the presence of inaccuracies of interval type, and the design of robust controllers with regional pole placement specifications. After explicitly characterizing a convex subset of robust controllers, the problem of designing non-fragile controllers is formulated as a design centering problem, which is then solved by a global optimization algorithm. Numerical examples illustrate the main characteristics of the approach proposed.
机译:在本文中,间隔分析框架解决了间隔工厂极点布置反馈控制器的设计问题。研究了与区间Diophantine方程概念相关的三个主要主题:关于区间多项式的鲁棒互素性的相对简单的研究,在存在区间类型不正确的情况下设计极点控制器的可靠计算方法以及鲁棒性的设计具有区域极点放置规范的控制器。在明确描述了鲁棒控制器的凸子集后,将设计非脆弱控制器的问题表述为设计居中问题,然后通过全局优化算法解决该问题。数值例子说明了所提出方法的主要特征。

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