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Observer-based fault detection for nonlinear networked systems with random packet dropout and time-varying delay

机译:具有随机数据包丢失和时变时滞的非线性网络系统基于观测器的故障检测

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In this paper, the fault detection problem for nonlinear networked control systems (NCSs) with packet dropout and delay is investigated. A nonlinear stochastic systems model is proposed to account for the NCSs with random packet dropout and network-induced time-varying delay in both from sensor to controller (S/C) and from controller to actuator (C/A). Based on the obtained NCSs model, employing observer-based fault detection filter as residual generator, the addressed fault detection problem is converted into an auxiliary nonlinear H control problem. Then, with the help of Lyapunov-Krasovskii functional approach, a sufficient condition for the desired fault detection filter is constructed in terms of certain linear matrix inequalities, which depend on not only delay interval but also on delay interval occurrence rate and successful packet communication rate. Especially, a trade-off phenomenon between the allowable delay bound and successful data packet transmission rate is found, which is typically resulted from limited bandwidth of communication networks. The effectiveness of proposed method is demonstrated by simulation example.
机译:本文研究了具有丢包和时延的非线性网络控制系统(NCS)的故障检测问题。提出了一种非线性随机系统模型,该模型考虑了从传感器到控制器(S / C)以及从控制器到执行器(C / A)都具有随机丢包和网络引起的时变延迟的NCS。在获得的NCSs模型的基础上,采用基于观测器的故障检测滤波器作为残差生成器,将解决的故障检测问题转化为辅助非线性H 控制问题。然后,借助Lyapunov-Krasovskii函数方法,根据某些线性矩阵不等式构造了所需故障检测滤波器的充分条件,该线性不等式不仅取决于延迟间隔,还取决于延迟间隔出现率和成功的包通信速率。尤其是,发现了在允许的延迟限制和成功的数据包传输速率之间的折衷现象,这通常是由于通信网络的带宽有限所导致的。仿真实例证明了所提方法的有效性。

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