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高性能微型RFID阅读器天线的设计与优化

张亚妮 孟成 李晨 周磊 苗挺

电子器件2024,Vol.47Issue(2):364-370,7.
电子器件2024,Vol.47Issue(2):364-370,7.DOI:10.3969/j.issn.1005-9490.2024.02.011

高性能微型RFID阅读器天线的设计与优化

Design and Optimization of High Performance Micro RFID Reader Antenna

张亚妮 1孟成 2李晨 3周磊 4苗挺1

作者信息

  • 1. 陕西科技大学文理学院,陕西 西安 710021
  • 2. 国网长丰县供电公司,安徽 合肥 231100
  • 3. 陕西科技大学机电工程学院,陕西 西安 710021
  • 4. 陕西科技大学电气与控制工程学院,陕西 西安 710021
  • 折叠

摘要

Abstract

In order to improve the application range and transmission performance of the RF identification system,a miniature tag antenna with an operating frequency of 13.56 MHz is designed,which adopts inductive coupling for information transmission,and a model of the miniature RF identification antenna is designed by using the 3D high frequency structure simulator(HFSS).The antenna structure,dielec-tric plate thickness,line spacing and number of turns of the coil are visualized and compared by parametric scanning,and the antenna im-pedance matching is completed on the basis of the model.The simulation results show that the designed miniature antenna has good radia-tion performance at the working frequency of 13.56 MHz,its return loss value(S11)reaches-58.18 dB.The antenna has excellent coupling performance,the theoretical transmission distance can reach more than 30 cm.The test results of the miniature RFID reader antenna show that the antenna is significantly better than other designs of the same type under the same environment when working on the 13 MHz-15 MHz frequency band.The measured return loss reaches-37 dB,and the return loss is about-27 dB at 13.56 MHz.The designed micro tag antenna has a broad application prospect in logistics and transportation,book management and wearable devices.

关键词

微型化/RFID/无线通讯/HFSS

Key words

miniaturization/RFID/wireless communication/HFSS

分类

信息技术与安全科学

引用本文复制引用

张亚妮,孟成,李晨,周磊,苗挺..高性能微型RFID阅读器天线的设计与优化[J].电子器件,2024,47(2):364-370,7.

基金项目

陕西省重点研发计划-国际科技合作计划项目(2021KWZ-11) (2021KWZ-11)

陕西省技术创新引导专项基金(2021QFY03-02) (2021QFY03-02)

西安市科技人才引智项目(2020YZ0017) (2020YZ0017)

电子器件

OACSTPCD

1005-9490

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