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Resilient Consensus for Robust Multiplex Networks with Asymmetric Confidence Intervals

机译:具有不对称置信区间的强大多路复用网络的弹性共识

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摘要

The consensus problem with asymmetric confidence intervals considered in this paper is characterized by the fact that each agent can have optimistic and/or pessimistic interactions with its neighbors. To deal with the asymmetric confidence scenarios, we introduce a novel multiplex network presentation for directed graphs and its associated connectivity concepts including the pseudo-strongly connectivity and graph robustness, which provide a resilience characterization in the presence of malicious nodes. We develop distributed resilient consensus strategies for a group of dynamical agents with locally bounded Byzantine agents in both continuous-time and discrete-time multi-agent systems. Drawing on our multiplex network framework, much milder connectivity conditions compared to existing works are proposed to ensure resilient consensus. The results are further extended to cope with resilient scaled consensus problems which allow both cooperative and antagonistic agreements among agents. Numerical examples are also exhibited to confirm the theoretical results and reveal the factors that affect the speed of convergence in our multiplex network framework.
机译:本文考虑的不对称置信区间的共识问题的特征在于,每个试剂可以与其邻居具有乐观和/或悲观的相互作用。为了处理不对称的置信情景,我们为指向图和其相关的连接概念引入了一种新的多路复用网络演示,包括伪强度连接和图形稳健性,这提供了恶意节点存在的弹性表征。我们在连续时间和离散时间多剂量系统中,为一组具有局部有界拜占庭试剂的一组动态剂开发分布式有弹性共识策略。绘制我们的多路复用网络框架,提出了与现有工程相比的更温和的连接条件,以确保有弹性共识。结果进一步扩展到应对弹性扩大的共识问题,允许代理商之间的合作和对抗协议。还表现出数值例子以确认理论结果,并揭示影响我们多路复用网络框架中收敛速度的因素。

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