Communicating Reliably in Multihop Dynamic Networks Despite Byzantine Failures

Alexandre Maurer, S. Tixeuil, X. Défago
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引用次数: 16

Abstract

We consider the following problem: two nodes want to reliably communicate in a dynamic multihop network where some nodes have been compromised, and may have a totally arbitrary and unpredictable behavior. These nodes are called Byzantine. We consider the two cases where cryptography is available and not available. We prove the necessary and sufficient condition (that is, the weakest possible condition) to ensure reliable communication in this context. Our proof is constructive, as we provide Byzantine-resilient algorithms for reliable communication that are optimal with respect to our impossibility results. In a second part, we investigate the impact of our conditions in three case studies: participants interacting in a conference, robots moving on a grid and agents in the subway. Our simulations indicate a clear benefit of using our algorithms for reliable communication in those contexts.
拜占庭故障下多跳动态网络的可靠通信
我们考虑以下问题:在一个动态多跳网络中,两个节点希望可靠地通信,其中一些节点已经被破坏,并且可能具有完全任意和不可预测的行为。这些节点被称为拜占庭节点。我们考虑加密可用和不可用的两种情况。我们证明了在这种情况下保证可靠通信的充分必要条件(即最弱可能条件)。我们的证明是建设性的,因为我们为可靠的通信提供了拜占庭弹性算法,这是我们不可能结果的最佳选择。在第二部分中,我们通过三个案例研究调查了我们的条件的影响:会议中的参与者互动,在网格上移动的机器人和地铁中的代理。我们的模拟表明,在这些环境中使用我们的算法进行可靠的通信有明显的好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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