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A fast clock synchronization algorithm for wireless sensor networks

机译:一种快速时钟无线传感器网络同步算法

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This paper proposes a novel clock synchronization algorithm for wireless sensor networks (WSNs). The algorithm is derived using a fast finite-time average consensus idea, and is fully distributed, meaning that each node relies only on its local clock readings and reading announcements from its neighbours. For networks with an acyclic graph, the algorithm converges in only d iterations for clock rate synchronization and another d iterations for clock offset synchronization, where d is the graph diameter. The algorithm enjoys low computational and communicational complexities and robustness against transmission adversaries. Each node can execute the algorithm asynchronously without the need for global coordination. Due to its fast convergence, the algorithm is most suitable for large-scale WSNs. For WSNs with a cyclic graph, a fast distributed depth-first-search (DFS) algorithm can be applied first to form a spanning tree before applying the proposed synchronization algorithm. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于无线传感器网络(WSN)的新型时钟同步算法。使用快速有限时间的平均共识思想导出该算法,并且是完全分布的,这意味着每个节点仅依赖于其本地时钟读数和读取邻居的通知。对于具有非环路图的网络,该算法仅收敛于时钟速率同步的D迭代,以及用于时钟偏移同步的另一个D迭代,其中D是图直径。该算法享有低计算和沟通复杂性和反对传输对手的鲁棒性。每个节点都可以异步执行算法,而无需全局协调。由于其快速收敛性,该算法最适合大型WSN。对于具有循环图的WSN,可以首先应用快速分布的深度优先搜索(DFS)算法在应用所提出的同步算法之前形成生成树。 (c)2018年elestvier有限公司保留所有权利。

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