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Maximum Allowable Loss Probability for Consensus of Multi-Agent Systems Over Random Weighted Lossy Networks

机译:随机加权有损网络上多智能体系统共识的最大允许损失概率

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摘要

This note studies the consensus seeking problem for a team of general linear dynamical agents that communicate via a weighted random lossy network. Linear state feedback consensus protocols are applied and both the weights and feedback gain are treated as control parameters in the protocol. It is shown that the weights and the link loss probabilities of a network have non-negligible effects on the consensus seeking ability of multi-agent systems. Firstly, a weight condition characterized by the eigenvalues of the weighted Laplacian matrix is given for systems over ideal communication networks without packet losses. Secondly, based on stochastic stability analysis a maximum allowable loss probability bound is proposed for systems over random lossy networks. As long as the link loss probabilities of the network are less than this bound and the mean topology has spanning trees, there exist linear protocols solving the mean-square consensus problem of the system.
机译:本说明研究了通过加权随机有损网络进行通信的一组通用线性动力代理的寻求共识问题。应用线性状态反馈共识协议,并将权重和反馈增益均视为协议中的控制参数。结果表明,网络的权重和链路丢失概率对多智能体系统的共识寻求能力具有不可忽略的影响。首先,针对理想的通信网络上的系统,给出了以加权拉普拉斯矩阵的特征值为特征的加权条件,而没有丢包。其次,基于随机稳定性分析,提出了随机有损网络上系统的最大允许损失概率边界。只要网络的链路丢失概率小于此范围,并且平均拓扑具有生成树,则存在线性协议可以解决系统的均方共识问题。

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