研究目的
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.
研究成果
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.
研究不足
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.
1:Experimental Design and Method Selection:
The study involves modifying a loop antenna to operate in both near and far-field, utilizing a high impedance surface (HIS) reflector for low-profile design. Theoretical models and simulations are employed to analyze the antenna's performance.
2:Sample Selection and Data Sources:
The antennas are designed and tested in both isolated and coupled modes to evaluate their performance in near and far-field operations.
3:List of Experimental Equipment and Materials:
Includes loop antennas with HIS reflector, vector network analyzer for reflection coefficient measurement, and anechoic chamber for far-field gain measurement.
4:Experimental Procedures and Operational Workflow:
The antennas are tested for reflection coefficient in isolated and coupled modes, coupling coefficient between antennas, and read range of RFID tags in open and enclosed environments.
5:Data Analysis Methods:
The performance is analyzed using Friis’s transmission equation to relate the coupling coefficient and read range, with simulations and measurements compared for validation.
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