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Design of chipless UWB RFID system using A CPW multi-resonator

机译:采用CpW多谐振器设计无芯片UWB RFID系统

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摘要

In this paper, the design of a novel chipless ultra-wideband radio-frequency identification (UWB RFID) system is proposed. The system employs printable uniplanar chipless tags and a pair of high-gain reader antennas. The chipless tag is composed of two UWB monopole antennas, connected by a coplanar waveguide (CPW). The tag's ID is represented by a spectral signature in the UWB frequency range, and is created by a multi-resonator embedded on the coplanar waveguide. The detection of the tag's ID is based on using only the amplitude of the spectral signature, which significantly simplifies the complexity of detection. The reader employs two separate Vivaldi antennas-one for transmitting a vertically polarized signal, and the other for receiving a horizontally polarized signal-to reduce the mutual coupling between the uplink and downlink signals. Further reduction of mutual coupling is achieved by using a copper plate at the reader to separate the uplink and downlink signals. These two proposed methods together reduced the mutual coupling by 20 dB. The chipless RFID tag with eight coplanar waveguide resonators in a group and the reader antennas were designed using computer simulation, and fabricated on Rogers substrates for measurement. The results of studies in an anechoic chamber showed that the proposed UWB RFID system could achieve a reading range of larger than 30 cm, at least three times longer than the maximum distance of a similar system reported by others. This indicated that the proposed system has great potential for short-range item tracking at low cost. © 1990-2011 IEEE.
机译:本文提出了一种新型的无芯片超宽带射频识别(UWB RFID)系统的设计。该系统采用可打印的单平面无芯片标签和一对高增益阅读器天线。无芯片标签由通过共面波导(CPW)连接的两个UWB单极天线组成。标签的ID由UWB频率范围内的频谱签名表示,并由嵌入共面波导中的多谐振器创建。标签ID的检测仅基于频谱特征的幅度,这大大简化了检测的复杂性。该阅读器使用两个单独的Vivaldi天线,一个用于发送垂直极化信号,另一个用于接收水平极化信号,以减少上行链路和下行链路信号之间的相互耦合。通过在读取器上使用铜板分隔上行链路和下行链路信号,可以进一步减少互耦。这两种提议的方法一起将相互耦合降低了20 dB。使用计算机仿真设计了一组具有八个共面波导谐振器的无芯片RFID标签和读取器天线,并将其制作在Rogers基板上进行测量。在消声室中的研究结果表明,拟议的UWB RFID系统可以实现大于30厘米的读取范围,至少是其他系统报告的最大距离的三倍。这表明所提出的系统具有以低成本进行短程物品跟踪的巨大潜力。 ©1990-2011 IEEE。

著录项

  • 作者

    Yuk TTI; Cheung SW; Weng Y;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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