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Non-Fragile Distributed Fault Estimation for a Class of Nonlinear Time-Varying Systems Over Sensor Networks: The Finite-Horizon Case

机译:传感器网络上一类非线性时变系统的非脆弱分布式故障估计:有限地平线案例

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This paper is concerned with a new non-fragile distributed fault estimation problem for a class of time-varying systems through sensor networks over a finite horizon. Both randomly occurring nonlinearities and randomly occurring gain variations, whose occurrences are governed by random variables obeying certain probabilistic distributions on the interval [0, 1] are taken into simultaneous consideration. The fault estimation is based on the information not only from the individual sensor, but also from its neighboring ones according to the given topology of the sensor network. The aim of this paper is to design a non-fragile distributed fault estimator such that, in the presence of certain drifts/variations/perturbations of the gain parameters during the implementation, a prescribed average H-infinity performance constraint on the estimation error dynamics is satisfied. Based on stochastic analysis techniques, the gain parameters are calculated by solving a series of recursive linear matrix inequalities over a finite horizon. Moreover, a simulation example is provided to show the effectiveness of the proposed fault estimation scheme.
机译:通过有限时间范围内的传感器网络,研究了一类时变系统的新的非脆弱分布式故障估计问题。同时考虑随机发生的非线性和随机发生的增益变化,它们的发生由服从间隔[0,1]上的某些概率分布的随机变量控制。故障估计不仅基于单个传感器的信息,还基于传感器网络给定拓扑的相邻传感器的信息。本文的目的是设计一种非脆弱的分布式故障估计器,使得在实现过程中增益参数存在某些漂移/变化/扰动时,对估计误差动态的规定平均H-无穷大性能约束为满意。基于随机分析技术,通过求解有限范围内的一系列递归线性矩阵不等式来计算增益参数。此外,提供了一个仿真示例来显示所提出的故障估计方案的有效性。

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