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Clock Synchronization in Mobile Ad Hoc Networks Based on an Iterative Approximate Byzantine Consensus Protocol

机译:基于迭代近似拜占庭共识协议的移动自组织网络中的时钟同步

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We consider the clock synchronization problem in wireless mobile ad hoc networks in the presence of Byzantine nodes. The communication topology is dynamic: nodes move randomly within a geographical area. We propose a clock synchronization protocol which is based on the linear approximate consensus method. Periodically each correct node broadcasts its current timestamp and gathers the timestamps provided by its current neighbors. To cope with the malicious nodes (and to improve the performance when the node density is low), each node keeps the collected timestamps in a local log. As a log may contain values received more or less recently, a transformation technique is introduced to refresh the outdated values. The accuracy of the synchronisation depends on the connectivity among the moving nodes. We use a matrix and vector based representation to model the behavior of the synchronization process and to analyze its accuracy. We show that the deviation between the different clock values can converge towards zero when a particular condition is satisfied infinitely often. The frequency at which the condition is satisfied also impacts the synchronization accuracy. Based on a particular mobility scenario, performance simulations are conducted.
机译:我们考虑到存在拜占庭节点的无线移动自组织网络中的时钟同步问题。通信拓扑是动态的:节点在地理区域内随机移动。我们提出了一种基于线性近似共识方法的时钟同步协议。每个正确的节点定期广播其当前时间戳,并收集其当前邻居提供的时间戳。为了应对恶意节点(并在节点密度较低时提高性能),每个节点都将收集的时间戳记保存在本地日志中。由于日志可能包含或多或少最近接收到的值,因此引入了一种转换技术来刷新过时的值。同步的准确性取决于移动节点之间的连接性。我们使用基于矩阵和向量的表示来对同步过程的行为进行建模并分析其准确性。我们显示出,当无穷无尽地满足特定条件时,不同时钟值之间的偏差可以收敛到零。满足条件的频率也会影响同步精度。根据特定的移动方案,进行性能模拟。

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