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A Delay-Dependent Approach to Finite-Time H∝ Control of Nonlinear Descriptor Systems with State Delay via Observer-Based Control

机译:基于观察者控制的状态延迟的非线性描述符系统的有限时间Hα控制的延迟依赖性方法

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摘要

This paper proposes a finite-time observer-based controller for time-delay descriptor systems with time-varying disturbances, model uncertainties, and one-sided Lipschitz nonlinearities. For this purpose, first, a nonlinear descriptor observer is designed, and the observer error system is calculated. Then, the observer-based control law is proposed to provide the conditions for robust stabilization of the closed-loop descriptor system by selecting an appropriate Lyapunov-Krasovskii functional. According to the delay-dependent stability criterion, LMI-based sufficient conditions are derived and the gains of the controller and the observer are calculated. The proposed controller guarantees the finite-time boundedness and H-infinity disturbance attenuation of the closed-loop descriptor system. Finally, the effectiveness of the proposed technique is investigated through computer simulations.
机译:本文提出了一种用于时间延迟描述符系统的有限时间观察者的控制器,其具有时差的干扰,模型不确定性和单面嘴唇尖端非线性。为此目的,首先,设计了非线性描述符观察者,并计算观察者错误系统。然后,提出了基于观察者的控制定律,以通过选择合适的Lyapunov-Krasovskii功能来提供闭环描述符系统的鲁棒稳定的条件。根据延迟相关的稳定性标准,推导出基于LMI的充足条件,并计算控制器的增益和观察者。所提出的控制器可确保闭环描述符系统的有限时间界限和H-Infinity干扰衰减。最后,通过计算机仿真研究了所提出的技术的有效性。

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