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Reliable H-infinity Stabilization of Fuzzy Systems with Random Delay Via Nonlinear Retarded Control

机译:非线性滞后控制的随机时滞模糊系统的可靠H-∞镇定

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In this paper, the robust reliable control problem has been investigated for a class of nonlinear discrete-time TS fuzzy systems with random delay. In particular, the proposed fuzzy system consists of local nonlinear models with set of fuzzy rules, but the conventional TS fuzzy systems has local linear models. Our attention is focused on the design of a feedback reliable nonlinear retarded control law to ensure the robust asymptotic stability for nonlinear discrete-time TS fuzzy system with admissible uncertainties as well as actuator failure cases and random delay. In particular, by using an input delay approach, the random delay with stochastic parameters in the system matrices is introduced in the system model. Based on the Lyapunov approach, firstly, a sufficient condition for asymptotic stability is proposed for TS fuzzy systems in the presence of actuator failures. Then, a robust reliable control is designed for the uncertain TS fuzzy system by solving a strict linear matrix inequalities using the available numerical software. Finally, a numerical example based on real-time ball and beam system is provided to validate the effectiveness of the proposed design technique.
机译:本文研究了一类具有随机时滞的非线性离散时间TS模糊系统的鲁棒可靠控制问题。特别地,所提出的模糊系统由具有一组模糊规则的局部非线性模型组成,而常规的TS模糊系统具有局部线性模型。我们的注意力集中在反馈可靠的非线性滞后控制律的设计上,以确保具有可容许不确定性的非线性离散时间TS模糊系统以及执行器故障情况和随机延迟的鲁棒渐近稳定性。特别地,通过使用输入延迟方法,在系统模型中引入了系统矩阵中具有随机参数的随机延迟。首先基于李雅普诺夫方法,为存在执行器故障的TS模糊系统提出了渐近稳定性的充分条件。然后,通过使用可用的数值软件求解严格的线性矩阵不等式,为不确定的TS模糊系统设计了鲁棒的可靠控制。最后,提供了一个基于实时球和梁系统的数值示例,以验证所提出的设计技术的有效性。

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