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Distributed state estimation, fault detection and isolation filter design for heterogeneous multi-agent linear parameter-varying systems

机译:异构多智能体线性参数变化系统的分布式状态估计,故障检测和隔离滤波器设计

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摘要

In this study, the authors present a new approach for the design of distributed state estimation and fault detection and isolation (FDI) filters for a class of linear parameter-varying multi-agent systems, where the state-space representations of the agents are not identical. The developed formulation for the FDI offers a distributed filter design method, in which each agent uses sensor measurements both locally and from the neighbouring agents. Each FDI filter is in the `unknown input observer' form which are designed so that their outputs, i.e. residual signals, are: (i) robust with respect to the external disturbance inputs and (ii) sensitive with respect to the fault signals. Moreover, it is shown that using the proposed methodology each agent is able to estimate not only its own states, but also states of its nearest neighbours in the presence of external disturbances and faults. Finally, a numerical example is given to illustrate the efficacy of the main results of the paper.
机译:在这项研究中,作者提出了一种用于设计一类线性参数变化多智能体系统的分布式状态估计和故障检测与隔离(FDI)滤波器的新方法,其中智能体的状态空间表示不是相同。为FDI开发的公式提供了一种分布式过滤器设计方法,其中,每个代理均使用本地和相邻代理的传感器测量值。每个FDI滤波器均采用“未知输入观察器”形式,其设计应使其输出(即残余信号)具有:(i)关于外部干扰输入的鲁棒性和(ii)关于故障信号的敏感性。而且,表明使用所提出的方法,每个代理不仅能够估计其自身的状态,而且能够估计在存在外部干扰和故障的情况下其最近邻居的状态。最后,给出一个数值例子来说明本文主要结果的有效性。

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