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Event-triggered robust H∞ state estimation for T-S fuzzy systems via piecewise Lyapunov functions

机译:基于分段Lyapunov函数的T-S模糊系统的事件触发鲁棒H∞状态估计

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This paper is concerned with the design of H event-triggered state estimation for discrete-time T-S fuzzy systems. With the event triggering communication strategy, only the measured outputs of the physical plant that violate a predefined triggering condition will be transmitted in the communication channel. Considering that the implementation of the filter may not be synchronized with the plant trajectories due to the asynchronous premise variables in network environment, a novel observer-based piecewise fuzzy filter is proposed. By applying a piecewise Lyapunov-Krasovskii functional and some techniques on matrix convexification, a method of event-triggered H piecewise filter design is developed for the filtering error system concerned to be asymptotically stable with a given disturbance attenuation level and reduced transmission rate. Moreover, a co-design algorithm to derive the filter gains and the event triggering parameters is proposed.
机译:本文涉及离散时间T-S模糊系统的H事件触发状态估计的设计。使用事件触发通信策略,只有违反预定义触发条件的物理工厂的测量输出将在通信通道中传输。考虑到由于网络环境中异步前提变量的原因,滤波器的实现可能与工厂轨迹不同步,提出了一种基于观测器的分段模糊滤波器。通过应用分段Lyapunov-Krasovskii泛函和矩阵凸化的一些技术,针对相关的滤波误差系统,在给定的干扰衰减水平和降低的传输速率下,渐近稳定,开发了一种事件触发的H分段滤波器设计方法。此外,提出了一种协同设计算法,以推导滤波器增益和事件触发参数。

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