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Normalization-Free Chipless RFIDs by Using Dual-Polarized Interrogation

机译:使用双极化查询的无归一化无芯片RFID

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摘要

A reliable encoding/detection scheme for chipless radio frequency identification (RFID) tags, free from any normalization procedure, is presented. The key strategy of the present approach consists in storing the information in the difference between vertically and horizontally polarized reflection coefficients of a completely passive tag. The measured reflection coefficients are preemptively filtered in the time domain to remove most of harmful effects due to the antenna coupling and environment multipath, and finally they are subtracted to obtain the differential response. A couple of chipless tag configurations suitable for providing the desired spectral response are presented. The resonators consist of an artificial impedance surface comprising either concentric rectangular loop resonators or square loop resonators loaded with stubs. The presented approach is experimentally verified in a non-anechoic environment, and its robustness is proved. This calibration-free approach could pave the way to practical applicability of chipless RFID tags in realistic scenarios with unknown response.
机译:提出了一种无码射频识别(RFID)标签的可靠编码/检测方案,该方案无需任何标准化程序。本方法的关键策略在于将信息存储在完全无源标签的垂直和水平偏振反射系数之间的差异中。在时域中对测得的反射系数进行先占滤波,以消除由于天线耦合和环境多径造成的大多数有害影响,最后将它们相减以获得差分响应。提出了几种适合提供所需光谱响应的无芯片标签配置。谐振器由人工阻抗表面组成,该表面包含同心矩形环路谐振器或装有短截线的方形环路谐振器。该方法在非回声环境中得到了实验验证,其鲁棒性得到了证明。这种无标定方法可以为无响应的现实情况下无芯片RFID标签的实际应用铺平道路。

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