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A two-prong approach to energy-efficient WSNs: Wake-up receivers plus dedicated, model-based sensing

机译:节能型WSN的两种解决方案:唤醒接收器以及基于模型的专用感应

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Energy neutral operation of WSNs can be achieved by exploiting the idleness of the workload to bring the average power consumption of each node below the harvesting power available. This paper proposes a combination of state-of-the-art low-power design techniques to minimize the local and global impact of the two main activities of each node: sampling and communication. Dynamic power management is adopted to exploit low-power modes during idle periods, while asynchronous wake-up and prediction based data collection are used to opportunistically activate hardware components and network nodes only when they are strictly required. Furthermore, the concept of "model-based sensing" is introduced to push prediction-based data collection techniques as close as possible to the sensing elements. The results achieved on representative real-world WSN case studies show that the combined benefits of the design techniques adopted is more than linear, providing an overall power reduction of more than three orders of magnitude. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过利用工作负载的闲置状态,使每个节点的平均功耗低于可用的采集功率,可以实现WSN的能量中立操作。本文提出了一种最新的低功耗设计技术,以最大程度地减少每个节点的两个主要活动(采样和通信)对本地和全球的影响。动态电源管理用于在空闲期间利用低功耗模式,而异步唤醒和基于预测的数据收集仅在严格要求时才用于机会性地激活硬件组件和网络节点。此外,引入了“基于模型的感测”的概念,以推动基于预测的数据收集技术尽可能地靠近感测元件。在具有代表性的真实世界WSN案例研究中获得的结果表明,所采用的设计技术的综合优势不仅仅在于线性,还使总功耗降低了三个数量级以上。 (C)2016 Elsevier B.V.保留所有权利。

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