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Stabilization of Discrete-Time T-S Fuzzy Systems with Random Input Delay: A New Modeling Method

机译:具有随机输入时滞的离散时间T-S模糊系统的镇定:一种新的建模方法

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This paper is concerned with the problems of stability analysis and stabilization control design for a class of discrete-time T-S fuzzy systems with random input delay. Different from the common assumptions on the delay in the existing literatures, it is assumed in this paper that the probabilities of the delay taking each value in a finite point set are known. In terms of the information of the occurrence probabilities of the delay taking values in the two finite point sets, using state augmentation method, a new state space model of the discrete-time T-S fuzzy systems are derived. Based on the new model, some criteria for the stochastic stability analysis and stabilization controller design are derived by using the Lyapunov-Krasovskii functional method. The developed criteria are in the form of linear matrix inequalities(LMIs). Finally, an illustrative example is provided to show the effectiveness and applicability of the proposed method.
机译:本文涉及一种随机输入延迟一类离散时间T-S模糊系统的稳定性分析和稳定控制设计问题。与现有文献延迟的常见假设不同,本文假设在有限点集中延迟所示的延迟的概率是已知的。就两个有限点集中的延迟延迟的发生概率的信息而言,使用状态增强方法,导出了离散时间T-S模糊系统的新状态空间模型。基于新模型,通过使用Lyapunov-Krasovskii功能方法来源的随机稳定性分析和稳定控制器设计的一些标准。发达的标准是线性矩阵不等式(LMI)的形式。最后,提供了说明性示例以显示所提出的方法的有效性和适用性。

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