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Bandwidth limitations of ultra high frequency–radio frequency identification tags

机译:超高频–射频识别标签的带宽限制

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Fundamental bandwidth limitations on the design of ultra high frequency (UHF) radio frequency identification (RFID) tags are investigated. This study was conducted by considering the optimum equivalent-circuit network necessary for bandwidth broadening in single resonant UHF-RFID tags with conjugate matching. This equivalent-circuit network is simply a parallel combination of an inductor and a resistor cascaded to the UHF-RFID chip. Bandwidth optimisation of the resulting network is validated by means of the Bode criterion. According to this analysis, a broadband UHF-RFID tag prototype able to operate worldwide is designed and fabricated. In order to reduce tag size and cost, the external matching network is omitted in the reported implementation. The measured read ranges are above 5 m within the whole UHF-RFID frequency band (840-960 MHz), with a peak value of 9 m at 870 MHz.
机译:研究了超高频(UHF)射频识别(RFID)标签设计的基本带宽限制。这项研究是通过考虑在具有共轭匹配的单谐振UHF-RFID标签中加宽带宽所需的最佳等效电路网络来进行的。该等效电路网络只是级联到UHF-RFID芯片的电感器和电阻器的并联组合。最终网络的带宽优化通过波特标准进行验证。根据该分析,设计并制造了一种能够在全球范围内运行的宽带UHF-RFID标签原型。为了减少标签的尺寸和成本,在报告的实现中省略了外部匹配网络。在整个UHF-RFID频带(840-960 MHz)内,测得的读取范围在5 m以上,在870 MHz处的峰值为9 m。

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