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Stability analysis and output feedback control for stochastic networked systems with multiple communication delays and nonlinearities using fuzzy control technique

机译:利用模糊控制技术具有多种通信延迟和非线性的随机网络系统的稳定性分析及输出反馈控制

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This paper addresses the H-infinity Takagi-Sugeno (T-S) fuzzy control for a class of T-S fuzzy discrete networked control systems with random interval communication delays and random sector nonlinearities. Firstly, the T-S fuzzy model is employed to approximate the discrete networked control system and the tth-order Rice fading channels model is introduced in the system model. Secondly, the T-S fuzzy dynamic output feedback controller with lth-order Rice fading channels output is designed for the T-S fuzzy discrete networked control system. Thirdly, the discrete delay-dependent Lyapunov-Krasovskii functional, stochastic system theory and Bernoulli probability distribution are employed to derive the stability conditions in terms of linear matrix inequalities (LMIs). Compared with previous works, the fading channels in the signal transmission are described clearly by setting the different channels coefficients of the lth-order Rice fading channels model. The closed-loop system is exponentially mean-square stable and prescribed H-infinity performance is guaranteed by designing the T-S fuzzy dynamic output feedback controller. The factorizations in the polynomial and the congruence transformation matrices are introduced to solve the LMIs, such that the controller gain matrices are determined. Finally, simulation examples are presented to show the effectiveness of proposed methods. (C) 2020 Published by Elsevier Inc.
机译:本文涉及具有随机间隔通信延迟和随机扇区非线性的一类T-S模糊离散网络控制系统的H-Infinity Takagi-Sugeno(T-S)模糊控制。首先,采用T-S模糊模型来近似离散网络控制系统,在系统模型中引入了TTH级稻衰落通道模型。其次,设计了具有Lth级Quading通道输出的T-S模糊动态输出反馈控制器,用于输出T-S模糊离散网络控制系统。第三,采用离散延迟依赖的Lyapunov-Krasovskii功能,随机系统理论和伯努利概率分布在线性矩阵不等式(LMI)来导出稳定性条件。与先前的作品相比,通过设定Lth阶Quading通道模型的不同通道系数来清楚地描述信号传输中的衰落通道。通过设计T-S模糊动态输出反馈控制器,可以保证闭环系统是指数均匀的均衡和规定的H-Infinity性能。引入多项式和同致变换矩阵的因素来解决LMI,使得确定控制器增益矩阵。最后,提出了模拟实施例以显示所提出的方法的有效性。 (c)由elsevier公司发布的2020年

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