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Performance Evaluation and Comparative Analysis of SubCarrier Modulation Wake-up Radio Systems for Energy-Efficient Wireless Sensor Networks

机译:节能无线传感器网络的子载波调制唤醒无线电系统的性能评估和比较分析

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摘要

Energy-efficient communication is one of the main concerns of wireless sensor networks nowadays. A commonly employed approach for achieving energy efficiency has been the use of duty-cycled operation of the radio, where the node's transceiver is turned off and on regularly, listening to the radio channel for possible incoming communication during its on-state. Nonetheless, such a paradigm performs poorly for scenarios of low or bursty traffic because of unnecessary activations of the radio transceiver. As an alternative technology, Wake-up Radio (WuR) systems present a promising energy-efficient network operation, where target devices are only activated in an on-demand fashion by means of a special radio signal and a WuR receiver. In this paper, we analyze a novel wake-up radio approach that integrates both data communication and wake-up functionalities into one platform, providing a reconfigurable radio operation. Through physical experiments, we characterize the delay, current consumption and overall operational range performance of this approach under different transmit power levels. We also present an actual single-hop WuR application scenario, as well as demonstrate the first true multi-hop capabilities of a WuR platform and simulate its performance in a multi-hop scenario. Finally, by thorough qualitative comparisons to the most relevant WuR proposals in the literature, we state that the proposed WuR system stands out as a strong candidate for any application requiring energy-efficient wireless sensor node communications.
机译:节能通信是当今无线传感器网络的主要关注之一。实现能量效率的一种常用方法是使用无线电的占空比操作,其中节点的收发器定期关闭和打开,并在其导通状态下侦听无线电信道以了解可能的传入通信。然而,由于无线收发器的不必要的激活,这种范例在低流量或突发流量的情况下表现不佳。作为一种替代技术,唤醒无线电(WuR)系统提供了有希望的节能网络操作,其中仅通过特殊的无线电信号和WuR接收器按需激活目标设备。在本文中,我们分析了一种新颖的唤醒无线电方法,该方法将数据通信和唤醒功能都集成到一个平台中,从而提供了可重新配置的无线电操作。通过物理实验,我们表征了这种方法在不同发射功率水平下的延迟,电流消耗和总体工作范围性能。我们还将介绍一个实际的单跳WuR应用程序场景,并演示WuR平台的第一个真正的多跳功能,并在多跳场景中模拟其性能。最后,通过与文献中最相关的WuR提议进行彻底的定性比较,我们指出,对于任何需要节能无线传感器节点通信的应用,拟议的WuR系统都是很强的候选者。

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