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An H_i/H_∞ optimisation approach to distributed event-triggered fault detection over wireless sensor networks

机译:无线传感器网络分布式事件触发故障检测的H_I /H_∞优化方法

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摘要

This paper is concerned with the problem of distributed event-triggered fault detection (FD) for linear discrete time-varying systems over resource-constrained wireless sensor networks. To reduce unnecessary communication frequency of sensor measurements and thus communication resource expenditure, an event-triggered communication mechanism is employed to determine whether or not each sensor's measurement should be broadcast to the distributed fault detection filter (FDF) over the wireless network at each time step. Then, an H-i/H-infinity optimisation approach is proposed to achieve distributed event-triggered fault detection for the concerned system. Specifically, a set of distributed event-triggered FDFs is constructed based on the event-triggered measurement information from each sensor node and its adjacent nodes. Different from the existing distributed event-triggered FD schemes, the major contributions of this paper are twofold. First, the proposed FDF for each sensor node can be designed individually and the residual signal on each node is completely decoupled from the event-triggered transmission error. Second, the design of distributed event-triggered FDFs is formulated as an H-i/H-infinity optimisation problem and an optimal solution can be obtained by recursively computing some Riccati recursions. Finally, a numerical example is given to illustrate the effectiveness of the proposed method.
机译:本文涉及用于在资源受限的无线传感器网络上线性离散时变量的分布式事件触发故障检测(FD)的问题。为了减少传感器测量的不必要通信频率并因此进行通信资源支出,采用事件触发的通信机制来确定每个传感器的测量是否应在每次步骤上通过无线网络广播到分布式故障检测滤波器(FDF) 。然后,提出了H-I / H-Infinity Optimization方法以实现有关系统的分布式事件触发故障检测。具体地,基于来自每个传感器节点及其相邻节点的事件触发的测量信息构建一组分布式事件触发的FDF。与现有的分布式事件触发的FD方案不同,本文的主要贡献是双重的。首先,可以单独设计每个传感器节点的所提出的FDF,并且每个节点上的残差信号从事件触发的传输错误完全解耦。其次,将分布式事件触发的FDF的设计配制成H-I / H-Infinity优化问题,并且可以通过递归计算一些Riccati递归来获得最佳解决方案。最后,给出了数值例子来说明所提出的方法的有效性。

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