Finite-Time Robust Guaranteed Cost Control for Continuous-Time Singular Systems with Nonlinear Perturbation

Xuejing Ren, Bo Li, Junjie Zhao, S. Wo
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Abstract

This note investigates the finite-time control problem for continuous-time singular system with nonlinear perturbation. The perturbation is a function of time and system state and satisfies a Lipchitz constraint. The definition of finite-time robust control for singular system with nonlinear perturbation is firstly presented. Then a sufficient condition for the existence and uniqueness of solution to the singular system is presented. Third, a sufficient condition of finite-time guaranteed cost controller is presented in terms of linear matrix inequality via generalized Lyapunov function approach. Finally, the effectiveness of the developed approach for singular systems is illustrated by numerical example.
非线性扰动连续奇异系统的有限时间鲁棒保成本控制
研究具有非线性扰动的连续奇异系统的有限时间控制问题。扰动是时间和系统状态的函数,满足一个Lipchitz约束。首先给出了具有非线性扰动的奇异系统的有限时间鲁棒控制的定义。然后给出了该奇异系统解存在唯一性的充分条件。第三,利用广义Lyapunov函数方法,利用线性矩阵不等式给出了有限时间保成本控制器存在的充分条件。最后,通过数值算例说明了该方法对奇异系统的有效性。
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