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Fault detection filter design for networked multi-rate systems with fading measurements and randomly occurring faults

机译:具有衰落测量和随机故障的网络化多速率系统的故障检测滤波器设计

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摘要

In this study, the fault detection (FD) problem is investigated for a class of networked multi-rate systems (NMSs) with network-induced fading channels and randomly occurring faults. The stochastic characteristics of the fading measurements are governed by mutually independent random channel coefficients over the known interval [0,1]. By applying the lifting technique, the system model for the observer-based FD is established. With the aid of the stochastic analysis approach, sufficient conditions are established under which the stochastic stability of the error dynamics for the state estimation is guaranteed and the prescribed performance constraint on the error dynamics for the fault estimation is achieved. Based on the established conditions, the addressed FD problem of NMSs is recast as a convex optimisation one that can be solved via the semi-definite program method, and the explicit expression of the desired FD filter is derived by means of the feasibility of certain matrix inequalities. The main results are specialised to the networked single-rate systems that are a special case of the NMSs. Finally, two simulation examples are utilised to illustrate the effectiveness of the proposed FD method.
机译:在这项研究中,针对一类具有网络感应衰落信道和随机发生故障的网络化多速率系统(NMS),研究了故障检测(FD)问题。衰落测量的随机特性由已知间隔[0,1]上相互独立的随机信道系数控制。通过应用提升技术,建立了基于观察者的FD系统模型。借助于随机分析方法,建立了充分的条件,在该条件下,可以保证用于状态估计的误差动态的随机稳定性,并达到对用于故障估计的误差动态的预定性能约束。根据建立的条件,将解决的网管系统FD问题作为凸优化算法进行重铸,可以通过半定程序法求解,并借助一定矩阵的可行性导出所需FD滤波器的显式。不平等。主要结果专门针对网络单速率系统,这是NMS的特例。最后,利用两个仿真实例来说明所提出的FD方法的有效性。

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