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On the lifetime analysis of always-on wireless sensor network applications

机译:始终如一的无线传感器网络应用的寿命分析

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Majority of papers in the area of wireless sensor networks (WSNs) have an element of energy-efficiency and associated with it an analysis of network lifetime. Yet, there is no agreement on how to analyze the lifetime of a WSN. As a result, errors are frequently made on both sides. Some underestimate the network lifetime by an order of magnitude, while others end up overestimating the lifetime by a significant factor. This paper presents a first step towards standardizing the lifetime analysis of WSNs. We focus on WSNs deployed for always-on applications, where the problem of power management is most severe because the environment needs to be monitored continuously. Underestimation of network lifetime is common when proposing sleep-wakeup schemes, where it is frequently assumed that in the absence of a sleep-wakeup scheme, a sensor node from the Mica family lasts 3-5 days on a pair of AA batteries. We show that the same sensor node can be made to last more than 36 days, even if it is continuously monitoring the environment. Overestimation typically occurs when proposing non-sleep-wake up power management schemes such as in-network data aggregation. Overestimation occurs because several network activities (e.g periodic routing messages) are assumed to have negligible effect on the network lifetime and therefore are ignored in the lifetime analysis. We use our recent experience in deploying ExScal (a large-scale WSN for intrusion detection) to identify major components in the network lifetime analysis. We then present a careful lifetime analysis of ExScal and show how to analyze the effects of using various non-sleep-wake up power management schemes such as hierarchical sensing, low-power listening, and in-network data aggregation on the network lifetime. Our lifetime analysis will be useful as a template in analyzing the lifetime of other WSNs deployed for always-on applications.
机译:无线传感器网络(WSNS)领域的大部分纸具有能量效率的元素,与网络寿命的分析有关。然而,没有关于如何分析WSN的寿命的协议。结果,两侧经常制造错误。有些人低估了一个数量级的寿命,而其他人最终通过一个重要因素估计了寿命。本文介绍了标准化WSN的寿命分析的第一步。我们专注于为始终开启应用程序而部署的WSN,其中电源管理问题最严重,因为需要连续监控环境。在提出睡眠唤醒方案时,低估网络寿命是常见的,其中经常假设在没有睡眠唤醒方案的情况下,来自云母家族的传感器节点持续3-5天的AA电池。我们表明,即使它不断监控环境,也可以使相同的传感器节点持续超过36天。在提出非睡眠 - 唤醒电源管理方案(例如网络中的数据聚合)时通常会发生高估。出现高估,因为假设几种网络活动(例如周期路由消息)对网络寿命具有可忽略的影响,因此在寿命分析中被忽略。我们使用最近在部署EXSCal(用于入侵检测)的excal(用于入侵检测)的经验,以确定网络寿命分析中的主要组件。然后,我们仔细介绍了exscal的仔细终身分析,并展示了如何分析使用各种非睡眠唤醒电源管理方案的效果,例如分层传感,低功耗侦听和网络寿命网络中的网络数据聚合。我们的生命周期分析将有用作为分析部署的其他WSN的寿命的模板。

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