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Energy and Bandwidth-Efficient Wireless Sensor Networks for Monitoring High-Frequency Events

机译:能量和带宽高效的无线传感器网络,用于监控高频事件

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Wireless Sensor Networks (WSNs) are mostly deployed to detect events (i.e., objects or physical changes) at a high/low frequency sampling that is usually adapted by a central unit (or a sink), thus requiring additional resource usage in WSNs. However, the problem of autonomous adaptive sampling regarding the detection of events has not been studied before. In this paper, we propose a novel scheme, termed "event-sensitive adaptive sampling and low-cost monitoring (e-Sampling)" by addressing the problem in two stages, which lead to reduced resource usage (e.g., energy, radio bandwidth) in WSNs. First, e-Sampling provides a solution to adaptive sampling that automatically switches between high- and low-frequency intervals to reduce the resource usage while minimizing false negative detections. Second, by analyzing the frequency content, e-Sampling presents an event identification algorithm suitable for decentralized computing in resource-constrained WSNs. In the absence of an event, "uninteresting" data is not transmitted to the sink. We apply e-Sampling to structural health monitoring (SHM), which is a typical application of high frequency events. Evaluation via both simulations and experiments validates the advantages of e-Sampling in low-cost event monitoring, and in expanding the capacity of WSNs for high data rate applications.
机译:无线传感器网络(WSN)主要部署以在高/低频采样处检测事件(即,对象或物理变化),其通常由中央单元(或接收器)调整,从而需要在WSN中进行额外的资源使用。然而,之前没有研究关于事件检测的自主自适应采样的问题。在本文中,我们通过解决两个阶段的问题,提出了一种新颖的方案,称为“事件敏感自适应采样和低成本监测(电子采样)”,这导致资源使用率降低(例如,能量,无线电带宽)在WSN。首先,电子采样为自动采样提供了一种自动采样,它在高频和低频间隔之间自动切换,以降低资源使用,同时最小化错误的负面检测。其次,通过分析频率内容,电子采样呈现了适用于资源受限WSN中的分散计算的事件识别算法。在没有事件的情况下,“无趣”数据不会被传输到宿。我们将电子抽样应用于结构性健康监测(SHM),这是一个典型的高频事件应用。通过模拟和实验评估验证了电子采样在低成本事件监控中的优势,以及扩大WSN的高数据速率应用程序的容量。

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