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Low-Power Scheduling for Time Synchronization Protocols in A Wireless Sensor Networks

机译:无线传感器网络中时间同步协议的低功耗调度

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Time synchronization is a fundamental problem in wireless sensor networks. Practically, wireless sensor networks require a scalable time synchronization mechanism to wake up the sensor nodes at specific scheduled times. It helps accomplish coordinated communications among the nodes to save energy. We introduce low-power scheduling for time synchronization (LPSS) protocols; LPSS minimizes the scheduling communication overhead, reduces the power consumption, and accelerates the scheduling process. This article demonstrates that LPSS achieves substantially fewer messages and less delay in the scheduling process than the previous techniques, fast scheduling and accurate drift compensation for time synchronization (FADS), and density-table-based synchronization (DTSync). Simulation results show, for a large network, that LPSS reduces the number of messages by 12 times compared to FADS and DTSync. Moreover, LPSS achieves less delay by 10 and 31 times compared to FADS and DTSync, respectively.
机译:时间同步是无线传感器网络中的一个基本问题。实际上,无线传感器网络需要可伸缩的时间同步机制,以在特定的计划时间唤醒传感器节点。它有助于完成节点之间的协调通信以节省能源。我们介绍了用于时间同步(LPSS)协议的低功耗调度; LPSS最大限度地减少了调度通信的开销,降低了功耗,并加快了调度过程。本文证明,与以前的技术相比,LPSS在调度过程中实现的消息数量更少,延迟更少,快速的调度和针对时间同步(FADS)的精确漂移补偿以及基于密度表的同步(DTSync)。仿真结果表明,对于大型网络,与FADS和DTSync相比,LPSS将消息数量减少了12倍。此外,与FADS和DTSync相比,LPSS的延迟分别减少了10倍和31倍。

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