Experimental analysis of power optimized waveforms for enhancing wake-up radio sensitivity

M. del Prete, A. Costanzo, D. Masotti, T. Polonelli, M. Magno, L. Benini
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引用次数: 4

Abstract

To minimize energy consumption of state-of-the-art wireless sensor nodes, asynchronous communication transceivers are adopted, which make use of an ultra-low power wake-up radio (WUR) to minimize the active time of the energy-hungry main communication radio. This work contributes to the ambitious goal of pushing over the minimum average RF power needed to operate the WUR, thus enabling energy-efficient communication in larger areas. To reach this goal a dual-band rectifier, optimized to be loaded by an ultra-low power comparator, is used as WUR detector. Its behavior is experimentally tested under several power-optimized excitation formats. By selecting the proper excitation format the base-band comparator is enabled starting from average RF-power as low as -64.5 dBm.
提高唤醒无线电灵敏度的功率优化波形实验分析
为了最大限度地减少最先进的无线传感器节点的能量消耗,采用异步通信收发器,它利用超低功耗唤醒无线电(WUR)来最大限度地减少耗能的主通信无线电的有效时间。这项工作有助于实现超过运行WUR所需的最低平均射频功率的宏伟目标,从而在更大的区域实现节能通信。为了实现这一目标,采用了一个优化为由超低功耗比较器加载的双带整流器作为WUR检测器。在几种功率优化激励形式下对其性能进行了实验测试。通过选择适当的激励格式,基带比较器从低至-64.5 dBm的平均射频功率开始启用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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