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首页> 外文期刊>IEEE Transactions on Communications >A Beaconless Asymmetric Energy-Efficient Time Synchronization Scheme for Resource-Constrained Multi-Hop Wireless Sensor Networks
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A Beaconless Asymmetric Energy-Efficient Time Synchronization Scheme for Resource-Constrained Multi-Hop Wireless Sensor Networks

机译:用于资源受限多跳无线传感器网络的信念无政可能节能时间同步方案

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摘要

The ever-increasing number of WSN deployments based on a large number of battery-powered, low-cost sensor nodes, which are limited in their computing and power resources, puts the focus of WSN time synchronization research on three major aspects of accuracy, energy consumption, and computational complexity. In the literature, the latter two aspects haven't received much attention compared to the accuracy of WSN time synchronization. Especially in multi-hop WSNs, intermediate gateway nodes are overloaded with tasks for not only relaying messages but also a variety of computations for their offspring nodes as well as themselves. Therefore, not only minimizing the energy consumption but also lowering the computational complexity while maintaining the synchronization accuracy is crucial to the design of time synchronization schemes for resource-constrained sensor nodes. In this paper, focusing on the three aspects of WSN time synchronization, we introduce a framework of reverse asymmetric time synchronization for resource-constrained multi-hop WSNs and propose a beaconless energy-efficient time synchronization scheme based on reverse one-way message dissemination. Experimental results with a WSN testbed based on TelosB motes running TinyOS demonstrate that the proposed scheme conserves up to 95% energy consumption compared to the flooding time synchronization protocol while achieving microsecond-level synchronization accuracy.
机译:越来越多的WSN部署基于大量电池供电的低成本传感器节点,它们在其计算和电力资源中受到限制,使WSN时间同步研究对精度,能量的三个主要方面的焦点进行了焦点消费和计算复杂性。在文献中,与WSN时间同步的准确性相比,后两个方面没有受到很多关注。特别是在多跳WSN中,中间网关节点以任务重载,不仅是用于中继消息,而且为其后代节点以及自己的各种计算。因此,不仅最小化能量消耗,而且在保持同步精度的同时降低计算复杂度对于资源受限传感器节点的时间同步方案的设计至关重要。在本文中,专注于WSN时间同步的三个方面,我们介绍了用于资源约束的多跳WSN的反向不对称时间同步的框架,并提出了基于反向单向消息传播的信念节能时间同步方案。基于运行Tinyos的Telosb Motes的WSN测试的实验结果表明,与洪水时间同步协议相比,该方案能够节省高达95%的能耗,同时实现微秒级同步精度。

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