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远程“零拦截”环境反向散射系统的新时代:前端功耗为130 nA时可达130米。

The New Era of Long-Range "Zero-Interception" Ambient Backscattering Systems: 130 m with 130 nA Front-End Consumption.

作者信息

Daskalakis Spyridon Nektarios, Georgiadis Apostolos, Tentzeris Manos M, Goussetis George, Deligeorgis George

机构信息

School of Engineering & Physical Sciences, Institute of Sensors, Signals and Systems, Heriot-Watt University, Edinburgh EH14 4AS, UK.

Independent Researcher, 2582 CN The Hague, The Netherlands.

出版信息

Sensors (Basel). 2022 May 30;22(11):4151. doi: 10.3390/s22114151.

Abstract

Internet of Things applications based on backscatter radio principles have appeared to address the limitations of high cost and high power consumption. While radio-frequency identification (RFID) sensor nodes are among the most commonly utilized state-of-the-art technologies, their range for passive implementations is typically short and well below 10 m being impractical for "rugged" applications where approaching the tag at such proximity, is not convenient or safe. In this work, we propose a long-range "zero interception" ambient backscatter (LoRAB) communication system relying on low power sensor (tag) deployments. Without employing a dedicated radio transmission, our technology enables the "zero interception" communication of the tags with portable receivers over hundreds of meters. This enables low-cost and low-power communications across a wide range of missions by using chirp spread spectrum (CSS) modulation on ambient FM signals. A laboratory prototype exploiting commercial components (laptops, DAQ, software-defined radios (SDR) platform) have demonstrated the potential by achieving 130 m tag-to-reader distance for a low bit rate of 88 bps with the modulator current consumption at around 103 nA.

摘要

基于反向散射无线电原理的物联网应用已经出现,以解决高成本和高功耗的局限性。虽然射频识别(RFID)传感器节点是最常用的先进技术之一,但其被动实现的范围通常较短,远低于10米,对于“恶劣”应用来说不切实际,因为在这种近距离接近标签既不方便也不安全。在这项工作中,我们提出了一种基于低功耗传感器(标签)部署的远程“零拦截”环境反向散射(LoRAB)通信系统。无需采用专用无线电传输,我们的技术能够实现标签与便携式接收器在数百米范围内的“零拦截”通信。通过对环境调频信号使用线性调频扩频(CSS)调制,这使得在广泛的任务中能够进行低成本、低功耗通信。一个利用商业组件(笔记本电脑、数据采集卡、软件定义无线电(SDR)平台)的实验室原型已经通过在88比特每秒的低比特率下实现130米的标签到阅读器距离,且调制器电流消耗约为103纳安,展示了其潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5968/9185270/afc245ccaefb/sensors-22-04151-g001.jpg

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