A Fine-grained Modulation Technology for ZigBee Backscatter Communication

Z. Xu, Yuan Ding, Wei Gong
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引用次数: 2

Abstract

This paper presents the first symbol-level modu-lation technology for ZigBee backscatter communication. The developed backscatter tag, leveraging ambient ZigBee transmissions as radio frequency (RF) carrier excitation, conveys data by translating an excitation signal into a new ZigBee signal in neighboring ZigBee channels. This avoids the strong interference from the ambient excitation signals. The key enabling technique is a symbol-level codeword translation, which exploits square waves based on the difference between the excitation and tag data. A working prototype was successfully demonstrated to validate the modulation technology, which consists of two parts: an RF front-end circuit and an FPG A-based control circuit. Through extensive experiments and field studies, the evaluation shows that the bit error rates (BERs) can be controlled to be less than 0.1 when the communication distance is within 2 meters.
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ZigBee反向散射通信的细粒度调制技术
提出了ZigBee反向散射通信的首个符号级调制技术。所开发的反向散射标签利用周围ZigBee传输作为射频(RF)载波激励,通过将激励信号转换为邻近ZigBee信道中的新ZigBee信号来传输数据。这避免了外界激励信号的强烈干扰。关键的使能技术是符号级码字转换,它利用基于激励和标签数据之间差异的方波。成功地演示了一个工作原型来验证调制技术,该技术由两部分组成:射频前端电路和基于FPG的控制电路。通过大量的实验和现场研究,评估表明,当通信距离在2米以内时,误码率(ber)可以控制在0.1以下。
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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