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Robust Fault Detection for Networked Systems with Distributed Sensors

机译:具有分布式传感器的网络系统的鲁棒故障检测

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摘要

This paper is concerned with the robust fault detection problem for a class of discrete-time networked systems with distributed sensors. Since the bandwidth of the communication channel is limited, packets from different sensors may be dropped with different missing rates during the transmission. Therefore, a diagonal matrix is introduced to describe the multiple packet dropout phenomenon and the parameter uncertainties are supposed to reside in a polytope. The aim is to design a robust fault detection filter such that, for all probabilistic packet dropouts, all unknown inputs and admissible uncertain parameters, the error between the residual (generated by the fault detection filter) and the fault signal is made as small as possible. Two parameter-dependent approaches are proposed to obtain less conservative results. The existence of the desired fault detection filter can be determined from the feasibility of a set of linear matrix inequalities that can be easily solved by the efficient convex optimization method. A simulation example on a networked three-tank system is provided to illustrate the effectiveness and applicability of the proposed techniques.
机译:本文涉及一类带有分布式传感器的离散时间网络系统的鲁棒故障检测问题。由于通信信道的带宽有限,因此在传输过程中,来自不同传感器的数据包可能会以不同的丢失率被丢弃。因此,引入了对角矩阵来描述多包丢失现象,并且参数不确定性被认为存在于多表位中。目的是设计一个健壮的故障检测滤波器,以便对于所有概率性数据包丢失,所有未知输入和可允许的不确定参数,将残差(由故障检测滤波器生成)和故障信号之间的误差尽可能小。 。提出了两种依赖于参数的方法来获得较不保守的结果。可以从一组线性矩阵不等式的可行性中确定所需故障检测滤波器的存在,可以通过有效的凸优化方法轻松解决该问题。提供了一个联网的三缸系统的仿真示例,以说明所提出技术的有效性和适用性。

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