On the issue of control of neutral-type systems by hybrid controllers with state feedback

V. E. Khartovskii
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Abstract

For linear autonomous systems of neutral type, an approach to control design problems in the form of feedback based on a new class of hybrid controllers is proposed. The structure of hybrid regulators necessarily includes a differential equation, so the closed system becomes differential-algebraic. A distinctive feature of hybrid controllers is the existence of elementary transformation of equations of a closed-loop system, which make it possible to obtain an independent subsystem of neutral type. In this case, the specified subsystem of neutral type uniquely determines the behavior of the solution $x(t)$ of the original open-loop system (possibly as a vector component of the solution vector of the closed-loop system). The main advantages of using hybrid controllers include the possibility of their application to systems that do not satisfy the “traditional” controllability properties. The properties of hybrid controllers have been studied. The author gives an example of using these controllers to solve a new problem of controlling the coefficients of a characteristic quasi-polynomial in the case where the approaches known in the literature are not applicable. The possibility of using hybrid controllers to solve the $0$-controllability problem using the finite control method is demonstrated.
带状态反馈的混合控制器对中性型系统的控制问题
对于中性类型的线性自主系统,提出了一种基于新型混合调节器的反馈形式控制设计问题的方法。混合控制器的结构必然包括微分方程,因此闭合系统成为微分代数系统。混合控制器的一个显著特点是存在闭环系统方程的基本变换,这使得获得中性类型的独立子系统成为可能。在这种情况下,指定的中性子系统唯一决定了原始开环系统的解 $x(t)$(可能作为闭环系统解矢量的矢量成分)的行为。使用混合控制器的主要优势包括可以将其应用于不符合 "传统 "可控性特性的系统。本文对混合控制器的特性进行了研究。作者举例说明了在文献中已知方法不适用的情况下,如何使用这些控制器解决控制特征准多项式系数的新问题。作者还证明了使用混合控制器来解决有限控制方法的 $0$ 可控性问题的可能性。
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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