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Power consumption reduction in Wireless Sensor Networks through optimal synchronization

机译:通过最佳同步降低无线传感器网络的功耗

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Operational lifetime of wireless sensor network (WSN) nodes is crucial in a variety of monitoring applications. As the radio chip is usually the most power-hungry component in small, low-cost WSN devices, battery lifetime can be extended by reducing the duty-cycle of the radio module. In fact, the wireless chip could be switched on just to run the tasks of the considered application, while it could be kept in sleep mode for all the rest of time. Of course, this approach is viable only if the monitoring tasks are scheduled periodically and if the devices are synchronized, namely if they have a common notion of time. Indeed, if nodes were unsynchronized, some of them might wake up when others are still sleeping and some connections could not be established. Since inter-node time synchronization can be maintained within known uncertainty boundaries only by repeatedly adjusting local clocks, synchronization activities can be also scheduled periodically. In this respect, this paper describes an analytical criterion to establish the value of the synchronization period minimizing the average power dissipated by a WSN node. The proposed analysis is validated by means of both simulation and experimental results.
机译:无线传感器网络(WSN)节点的使用寿命在各种监控应用中至关重要。由于无线电芯片通常是小型低成本WSN设备中最耗电的组件,因此可以通过减少无线电模块的占空比来延长电池寿命。实际上,可以将无线芯片打开只是为了运行所考虑的应用程序的任务,而在其余所有时间中都可以将其保持在睡眠模式。当然,只有在定期安排监视任务并同步设备(即它们具有共同的时间概念)时,这种方法才可行。的确,如果节点不同步,则其中一些节点可能会在其他节点仍处于睡眠状态且无法建立某些连接时唤醒。由于仅通过重复调整本地时钟就可以将节点间时间同步保持在已知的不确定性范围内,因此还可以定期安排同步活动。在这方面,本文描述了一种分析标准,用于建立最小化WSN节点平均功耗的同步周期值。仿真和实验结果均验证了所提出的分析。

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