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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Dual-Band Impedance-Matching Networks Based on Split-Ring Resonators for Applications in RF Identification (RFID)
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Dual-Band Impedance-Matching Networks Based on Split-Ring Resonators for Applications in RF Identification (RFID)

机译:基于开环谐振器的双频阻抗匹配网络在射频识别(RFID)中的应用

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摘要

This paper is focused on the design of dual-band impedance-matching networks of interest in RF identification (RFID) systems. By cascading an impedance-matching network between the chip and antenna, the performance of the RFID tags can be improved. The main aim of this study is to demonstrate the possibility of designing such networks by means of split-ring resonators coupled to microstrip transmission lines. These resonators are especially useful in this design since their equivalent circuit substantially simplifies the parameter calculation of the matching network. Dual-band conjugate matching at two different frequencies, $f_{1} = 867~{hbox{MHz}}$ and $f_{2} = 915~{hbox{MHz}}$, corresponding to the assigned bands for UHF RFID in Europe and the U.S., respectively, is demonstrated. The main difficulty for the synthesis of these dual-band matching networks relies on the proximity of $f_{1}$ and $f_{2}$ . Although the chip impedance cannot be considered a design parameter, the network design can be alleviated by allowing certain flexibility in the antenna stage. The fabricated prototype, a dual-band impedance-matching network based on split-ring resonators and loaded with a slot antenna, was characterized by measuring its reflection coefficient. The results reveal that conjugate matching at the above-cited frequencies for the chip impedance under consideration is achieved.
机译:本文重点研究射频识别(RFID)系统中感兴趣的双频阻抗匹配网络的设计。通过级联芯片和天线之间的阻抗匹配网络,可以提高RFID标签的性能。这项研究的主要目的是证明通过与微带传输线耦合的裂环谐振器设计此类网络的可能性。这些谐振器在该设计中特别有用,因为它们的等效电路大大简化了匹配网络的参数计算。在两个不同的频率$ f_ {1} = 867〜{hbox {MHz}} $和$ f_ {2} = 915〜{hbox {MHz}} $的双频共轭匹配,对应于UHF RFID的分配频段在欧洲和美国分别进行了演示。合成这些双波段匹配网络的主要困难在于$ f_ {1} $和$ f_ {2} $的接近度。尽管不能将芯片阻抗视为设计参数,但可以通过在天线阶段允许一定的灵活性来减轻网络设计的负担。通过测量其反射系数来表征所制造的原型,该原型是基于裂环谐振器并装有缝隙天线的双频阻抗匹配网络。结果表明,在考虑的芯片阻抗的上述频率下实现了共轭匹配。

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