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Resilient Asymptotic Consensus in Robust Networks

机译:鲁棒网络中的弹性渐近共识

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This paper addresses the problem of resilient in-network consensus in the presence of misbehaving nodes. Secure and fault-tolerant consensus algorithms typically assume knowledge of nonlocal information; however, this assumption is not suitable for large-scale dynamic networks. To remedy this, we focus on local strategies that provide resilience to faults and compromised nodes. We design a consensus protocol based on local information that is resilient to worst-case security breaches, assuming the compromised nodes have full knowledge of the network and the intentions of the other nodes. We provide necessary and sufficient conditions for the normal nodes to reach asymptotic consensus despite the influence of the misbehaving nodes under different threat assumptions. We show that traditional metrics such as connectivity are not adequate to characterize the behavior of such algorithms, and develop a novel graph-theoretic property referred to as network robustness. Network robustness formalizes the notion of redundancy of direct information exchange between subsets of nodes in the network, and is a fundamental property for analyzing the behavior of certain distributed algorithms that use only local information.
机译:本文解决了节点行为异常时网络中共识的弹性问题。安全且容错的共识算法通常假设掌握非本地信息;但是,此假设不适用于大规模动态网络。为了解决这个问题,我们专注于为故障和受损节点提供弹性的本地策略。假设受感染的节点完全了解网络以及其他节点的意图,我们将根据对最坏情况下的安全漏洞具有弹性的本地信息设计共识协议。我们为正常节点达到渐近共识提供了必要和充分的条件,尽管在不同威胁假设下行为异常的节点也会产生影响。我们表明,诸如连接性之类的传统指标不足以表征此类算法的行为,并开发了一种称为网络鲁棒性的新颖的图论属性。网络健壮性使网络中节点子集之间直接信息交换的冗余概念正式化,并且是分析某些仅使用本地信息的分布式算法的行为的基本属性。

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