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首页> 外文期刊>International Journal of Control, Automation and Systems >Fault detection for a class of networked nonlinear systems subject to imperfect measurements
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Fault detection for a class of networked nonlinear systems subject to imperfect measurements

机译:测量不完善的一类网络非线性系统的故障检测

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This paper addresses the problem of fault detection (FD) for discrete-time networked systems with global Lipschitz conditions and imperfect measurements. By using Bernoulli stochastic variables and a switching signal, a unified model is proposed to describe four kinds of imperfect measurements, that is, access constraints, time delays, packet dropouts, and signal quantization. We aim to design a fault detection filter (FDF) such that, for all external disturbances and imperfect measurements, the error between the residual and fault is made as small as possible. The addressed FD problem is then converted into an auxiliary H filtering problem for discrete-time stochastic switched systems with multiple time-varying delays. By applying Lyapunov-Krasovskii approach, a sufficient condition for the existence of the FDF is derived in terms of certain linear matrix inequalities (LMIs). When these LMIs are feasible, the explicit expression of the desired FDF can also be characterized. A numerical example is exploited to show the effectiveness of the results obtained.
机译:本文解决了具有全局Lipschitz条件和不完美测量的离散时间网络系统的故障检测(FD)问题。通过使用伯努利随机变量和切换信号,提出了一个统一的模型来描述四种不完善的测量,即访问限制,时间延迟,数据包丢失和信号量化。我们旨在设计一种故障检测滤波器(FDF),以便针对所有外部干扰和不完美的测量,使残差和故障之间的误差尽可能小。然后将已解决的FD问题转换为具有多个时变时滞的离散时间随机切换系统的辅助H 滤波问题。通过应用Lyapunov-Krasovskii方法,根据某些线性矩阵不等式(LMI),得出了存在FDF的充分条件。当这些LMI可行时,也可以表征所需FDF的显式表达。数值例子表明了所得结果的有效性。

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