Solutions to the output regulation problem of time-varying descriptor systems

X. Su, Wenai Liu, Adiya Bao
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Abstract

This paper studies the output regulation problem of time-varying descriptor systems and the problem of designing state feedback and dynamic measurement output feedback control laws which asymptotically achieves output regulation and disturbance rejection is considered. New regulator equations are proposed for time-varying descriptor systems in the form of differential-algebraic matrix equations. The unique solution of the proposed regulator equations is given as well. We prove that the output regulation problem of time-varying descriptor systems is solvable if and only if the given regulator equations are solvable. Based on the solution of the regulator equations, the state feedback and dynamic measurement output feedback control laws are designed to solve the output regulation problem. The work extends the existing results of output regulation problem for time-varying linear systems to the time-varying descriptor systems. Numerical examples are given to show the effectiveness of our methodology.
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时变描述符系统输出调节问题的解决方案
本文研究了时变描述符系统的输出调节问题,并考虑了如何设计状态反馈和动态测量输出反馈控制规律,从而渐近地实现输出调节和干扰抑制的问题。以微分代数矩阵方程的形式为时变描述符系统提出了新的调节方程。同时给出了所提调节方程的唯一解。我们证明,当且仅当给定的调节方程可解时,时变描述符系统的输出调节问题才是可解的。根据调节器方程的求解,我们设计了状态反馈和动态测量输出反馈控制法则来解决输出调节问题。该研究将现有的时变线性系统输出调节问题的研究成果扩展到时变描述符系统。我们还给出了数值示例来说明我们的方法的有效性。
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