Fast Fault-Tolerant Time Synchronization for Wireless Sensor Networks

Sunggu Lee, Ungjin Jang, Junyoung Park
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引用次数: 5

Abstract

A wireless sensor network (WSN) typically consists of a large number of small-sized devices that have very low computational capability, small amounts of memory and the need to conserve energy as much as possible (most commonly by entering suspended mode for extended periods of time). Previous approaches for WSN time synchronization do not satisfactorily address all of the requirements of WSN environments. Thus, this paper proposes a new fault-tolerant WSN time sychronization algorithm that is extremely fast (when compared to previous algorithms), achieves a guaranteed level of time synchronization for all non-faulty nodes, can accommodate nodes that enter suspended mode and then wake up, utilizes very little communication and computation resources (thereby leaving those resources available for use by other applications), operates in a completely decentralized manner and tolerates up to f faulty nodes. The efficacy of the proposed algorithm is shown using analysis and experimental results.
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无线传感器网络快速容错时间同步
无线传感器网络(WSN)通常由大量小型设备组成,这些设备的计算能力非常低,内存很少,并且需要尽可能地节省能量(最常见的是通过进入长时间的暂停模式)。以往的无线传感器网络时间同步方法不能很好地满足无线传感器网络环境的所有要求。因此,本文提出了一种新的容错WSN时间同步算法,该算法速度极快(与以前的算法相比),可以保证所有非故障节点的时间同步水平,可以容纳进入挂起模式然后唤醒的节点,占用很少的通信和计算资源(从而使这些资源可供其他应用程序使用)。以完全分散的方式运行,并允许多达f个故障节点。分析和实验结果表明了该算法的有效性。
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