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An efficient approach for data transmission in power-constrained wireless sensor network

机译:功率受限的无线传感器网络中有效的数据传输方法

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Technological advances have made Wireless Sensor Networks (WSN) more reliable, low cost, and widely used in a variety of applications. As WSN nodes are low power battery operated with limited lifespan, optimizing their resources (sensing, channel use, computing) is an essential task for the success of applications implemented over these networks. Even though this task could be challenging for large WSN, its impact in terms of network survivability and economic benefits can be significant. In this paper, we will focus on optimizing radio data transmission and evaluate its impact on power saving. We will analyze the data collected from a large WSN, more than 20,000 nodes, used for water meter readings in the City of Moncton. Two data driven approaches, reduction and prediction-based, are evaluated and compared. Then we propose a system for data collection and transmission that improves power consumption, in comparison with the existing one, without affecting the effectiveness of the application in terms of water consumption monitoring and detection of leaks. Experimental results show substantial power savings and significant increases in battery lifespan.
机译:技术进步使无线传感器网络(WSN)更可靠,成本更低,并广泛用于各种应用中。由于WSN节点是使用寿命有限的低功耗电池,因此,优化其资源(传感,信道使用,计算)是成功通过这些网络实现应用程序的一项重要任务。即使此任务对于大型WSN而言可能具有挑战性,但它在网络生存能力和经济利益方面的影响仍是巨大的。在本文中,我们将专注于优化无线电数据传输并评估其对节电的影响。我们将分析从一个大型WSN(超过20,000个节点)收集的数据,这些数据用于在Moncton市的水表读数。评估和比较了两种基于数据的方法,即基于缩减和基于预测的方法。然后,我们提出一种用于数据收集和传输的系统,该系统与现有系统相比可以降低功耗,而不会在水消耗监控和泄漏检测方面影响应用程序的有效性。实验结果表明,可以节省大量电量,并可以显着延长电池寿命。

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