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首页> 外文期刊>IEEE Journal of Oceanic Engineering >TS-MUWSN: Time Synchronization for Mobile Underwater Sensor Networks
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TS-MUWSN: Time Synchronization for Mobile Underwater Sensor Networks

机译:TS-MUWSN:移动水下传感器网络的时间同步

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摘要

Time synchronization is an important, yet challenging, problem in underwater sensor networks (UWSNs). This challenge can be attributed to: 1) messaging timestamping; 2) node mobility; and 3) Doppler scale effect. To mitigate these problems, we present an acoustic-based time-synchronization algorithm for UWSN, where we compare several message time-stamping algorithms in addition to different Doppler scale estimators. A synchronization system is based on a bidirectional message exchange between a reference node and a slave one, which has to be synchronized. Therefore, we take as reference the DA-Sync-like protocol (Liu et al., 2014), which takes into account node's movement by using first-order kinematic equations, which refine Doppler scale factor estimation accuracy, and result in better synchronization performance. In our study, we propose to modify both time-stamping and Doppler scale estimation procedures. Besides simulation, we also perform real tests in controlled underwater communication in a water test tank and a shallow-water test in the Mediterranean Sea.
机译:在水下传感器网络(UWSN)中,时间同步是一个重要但具有挑战性的问题。这个挑战可以归因于:1)消息时间戳。 2)节点移动性; 3)多普勒尺度效应。为了减轻这些问题,我们为UWSN提出了一种基于声学的时间同步算法,除了不同的多普勒比例估计器外,我们还比较了几种消息时间戳算法。同步系统基于参考节点和从节点之间的双向消息交换,必须进行同步。因此,我们以类似DA-Sync的协议(Liu等人,2014)为参考,该协议通过使用一阶运动方程来考虑节点的运动,从而改善了多普勒比例因子估计的准确性,并获得了更好的同步性能。 。在我们的研究中,我们建议修改时间戳和多普勒比例估计程序。除了模拟之外,我们还在受控的水下通信系统中的水测试箱中进行实际测试,并在地中海进行浅水测试。

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