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New method of fault-distribution-dependent memory-reliable controller design for discrete-time systems with stochastic input delays

机译:具有随机输入延迟的离散时间系统的与故障分布相关的可靠存储控制器设计新方法

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摘要

A new memory-reliable controller design for a class of discrete-time systems with time-varying input delays is proposed. By assuming that the actuator fault obeys a certain probabilistic distribution, a new practical actuator fault model is presented. Based on this fault model and the known past information, an augmented system with time-varying delay or non-delay, similar to switched systems, is established. By using the Lyapunov?? Krasovskii approach, a sufficient condition for the existence of reliable controller is expressed by linear matrix inequalities. An illustrative example is exploited to show the effectiveness of the proposed design procedures.
机译:提出了一种具有时变输入延迟的离散时间系统的新型存储器可靠控制器设计。通过假设执行器故障服从一定概率分布,提出了一种新的实用执行器故障模型。基于该故障模型和已知的过去信息,建立了具有时变延迟或无延迟的扩展系统,该系统类似于交换系统。通过使用李雅普诺夫? Krasovskii方法是线性矩阵不等式表示存在可靠控制器的充分条件。利用一个说明性的例子来说明所提出的设计程序的有效性。

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