用于标签读取范围扩展的双基地反向散射无线电

J. Kimionis, A. Bletsas, J. Sahalos
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引用次数: 48

摘要

这项工作考察了从标签调制载波接收中错位载波传输的想法,即双静态而不是单静态反向散射无线电。通过这种方式,多个载波发射器可以分布在给定的地理区域,并照亮一组射频标签/传感器,这些标签/传感器将接收到的载波调制并分散到单个软件定义的接收器。载波发射机数量的增加及其分布式特性有助于标签可能位于更靠近一个载波发射机的位置,从而提高朝向接收器的散射信号的功率。具体来说,这项工作a)仔细地推导出双稳态反向散射无线电和开/关键控(OOK)标签调制(广泛用于商业标签)的近最佳检测器,b)分析计算它们的误码率(BER)性能,以及c)在实践中使用定制的双稳态反向散射无线电链路进行实验测试。作为附带的红利,表明所提出的接收器的非线性处理需要对所使用的标签设计原则进行一定的关注,这在文献中通常被忽视,验证了最近报道的微波领域的理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bistatic backscatter radio for tag read-range extension
This work examines the idea of dislocating the carrier transmission from the tag-modulated carrier reception, i.e. bi-static rather than mono-static backscatter radio. In that way, more than one carrier transmitters can be distributed in a given geographical area and illuminate a set of RF tags/sensors that modulate and scatter the received carrier towards a single software-defined receiver. The increased number of carrier transmitters and their distributed nature assists tags to be potentially located closer to one carrier transmitter and thus, improves the power of the scattered signals towards the receiver. Specifically, this work a) carefully derives near-optimal detectors for bi-static backscatter radio and on/off keying (OOK) tag modulation (which is widely used in commercial tags), b) analytically calculates their bit error rate (BER) performance, and c) experimentally tests them in practice with a custom bistatic backscatter radio link. As a collateral dividend, it is shown that the non-linear processing of the proposed receivers requires certain attention on the utilized tag design principles, commonly overlooked in the literature, validating recently reported theoretical results on the microwave domain.
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