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Distributed fault detection for a class of second-order multi-agent systems: an optimal robust observer approach

机译:一类二阶多主体系统的分布式故障检测:最优鲁棒观测器方法

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摘要

In this study, the distributed fault detection and isolation problem for a class of second-order discrete-time multi-agent systems (MASs) is studied by using an optimal robust observer approach. The work is based on an MAS with a mean square bounded consensus protocol. The authors prove that for this kind of system, a bank of optimal robust observers can be constructed for a certain agent to detect and isolate the possible faults of its neighbour agents. The main result of this study is to bring forward an existence condition for these observers, which is closely related to the topology structure of the MAS. For the detection of the faults injected in position states, they show that only the position information of the MAS is needed, but for the case of detecting faults in velocity states, both position and velocity measurements are needed. Simulation results are presented to illustrate the effectiveness of the results proposed in this study.
机译:在这项研究中,使用最优鲁棒观测器方法研究了一类二阶离散时间多智能体系统(MAS)的分布式故障检测和隔离问题。这项工作基于具有均方有界共识协议的MAS。作者证明,对于这种系统,可以为特定代理构建一组最佳鲁棒观察者,以检测并隔离其相邻代理的可能故障。这项研究的主要结果是为这些观察者提出了存在条件,这与MAS的拓扑结构密切相关。为了检测在位置状态下注入的故障,他们表明仅需要MAS的位置信息,但是对于检测速度状态下的故障,则需要位置和速度测量。仿真结果表明了该研究结果的有效性。

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