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On design of robust reliable H_∞ control and input-to-state stabilization of uncertain stochastic systems with state delay

机译:具有时滞的不确定随机系统的鲁棒可靠H_∞控制和输入状态稳定设计

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This paper is concerned with the problem of designing a robust reliable H_∞ control for uncertain stochastic systems with time delay (USSD) and time-varying norm-bounded parametric uncertainties in the system states. The faulty actuators are considered as a disturbance signal to the system which is augmented with system disturbance input. The main objective of the paper is presenting a state feedback controller that guarantees input-to-state stability (ISS) of the plant and an H_∞ norm-bound constraint on the attenuation of the augmented disturbance for all admissible uncertainties and actuator failures. The problem is solved by using Lyapunov functions together with the Razumikhin methodology. To clarify the proposed results, some illustrative examples are presented.
机译:本文关注的问题是为不确定的随机系统设计鲁棒的可靠H_∞控制,该系统具有时延(USSD)和时变范数界参数不确定性。有故障的执行器被认为是对系统的干扰信号,并通过系统干扰输入得到增强。本文的主要目的是提出一种状态反馈控制器,该控制器可保证工厂的输入到状态稳定性(ISS),并针对所有可容许的不确定性和执行器故障,对增强扰动的衰减进行H_∞范数约束。通过使用Lyapunov函数和Razumikhin方法来解决该问题。为了阐明建议的结果,提供了一些说明性示例。

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