两个探戈:混合光和反向散射网络为下一个十亿设备

Ander Galisteo, Ambuj Varshney, D. Giustiniano
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引用次数: 32

摘要

全球物联网(IoT)设备的销售增长率一直低于预测。这种减速部分是由于对电池的需求和更换电池的可扩展性成本造成的。在过去的几年里,反向散射技术引起了人们极大的兴趣,它可以通过消除电池来实现可持续的传感设备。物联网设备已被设计用于传输具有反向散射的感测数据,但使用无电池设备有效接收数据的问题仍然存在。如本文所示,传统的低功率射频(RF)包络检测器存在灵敏度低、误检报警和能效低等问题。我们认为,光保真度(LiFi)可以提供下行链路和收集介质,因为LED灯被广泛应用于照明。我们首次证明,可以将LiFi和RF反向散射的优点结合起来,实现无电池通信。我们设计了一个低功耗的平台,利用这两种媒介的互补性。我们证明,我们的平台消除了RF反向散射典型的下行链路接收中的能量低效率,并且与传统的单一技术设计相比,显著扩展了无电池标签的部署场景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two to tango: hybrid light and backscatter networks for next billion devices
The growth rate of Internet-of-Things (IoT) devices sold globally is constantly lower than the forecast. This deceleration is caused in part by the need for batteries and the scalability cost for their replacement. Backscatter has attracted significant interest over the past couple of years to enable sustainable sensing devices by eliminating batteries. IoT devices have been designed for transmitting sensed data with backscatter, but the question of efficient reception of data with battery-free devices is still open. As shown in this paper, classical low-power Radio Frequency (RF) envelope detectors are affected by low sensitivity, false detection alarms, and low energy efficiency. We argue that Light Fidelity (LiFi) can provide downlink and harvesting medium as LED lights are becoming pervasively deployed for illumination. We show, for the first time, that the advantages of LiFi and RF backscatter can be combined for battery-free communication. We design a low-power platform that leverages the complementary nature of these two mediums. We demonstrate that our platform removes energy-inefficiency in the downlink reception typical of RF backscatter, and significantly expands the deployment scenarios for battery-free tags when compared to conventional single-technology designs.
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