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UHF Reader Antenna for Near and Far-Field RFID Operation

DOI:10.1109/JRFID.2018.2884935 期刊:IEEE Journal of Radio Frequency Identification 出版年份:2018 更新时间:2025-09-04 15:30:14
摘要: In order to detect the RFID tags kept inside an enclosure, the reader antenna can couple energy into another antenna kept in the near-field region. To detect the tags placed in the far-field, the reader antenna should have a good gain. Usually, these two requirements compete with each other due to the effect of coupling on the frequency of operation of the antenna system. In this work modification to a loop antenna is proposed such that it can operate in both near and far-field. Loop antenna with high impedance surface (HIS) reflector results in a low-profile antenna pair where both the antennas can interchangeably operate in near-field and far-field, with their operating frequency band independent of the spacing between the antennas. The performance of the proposed antennas is compared with that of several other antennas by measuring the read range of RFID tags. It is found that the proposed antennas perform better in comparison with the other antennas when detecting the tags placed inside an enclosure. When operating as a far-field antenna, their performance is very close to that of a conventional RFID reader antenna which is optimized only for far-field operation.
作者: Manikanta Lalkota,Gaurangi Gupta,Vivek Kumar Pandit,A. R. Harish
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To design a UHF reader antenna capable of operating in both near and far-field for RFID applications, addressing the challenge of detecting RFID tags inside enclosures without placing a reader inside every enclosure due to high cost and connectivity requirements.

The proposed loop antenna with HIS reflector successfully operates in both near and far-field for RFID applications, offering a low-profile design with performance comparable to conventional far-field antennas. The antenna pair demonstrates high coupling in the near-field and good gain in the far-field, making it suitable for detecting RFID tags inside and outside enclosures.

The frequency of operation in the coupled mode is a function of the distance between the antennas, which may limit the flexibility in some applications. The proposed antenna with HIS reflector presents a significant improvement by making the coupling performance independent of the distance between the antennas.

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