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UHF RFID Conductive Fabric Tag Design Optimization
Franck Kimetya Byondi1, Youchung Chung1
1Information and Communication Engineering Department, Daegu University, Kyungsan City 38453, Korea.
Sensors (Basel, Switzerland)
|August 28, 2021
Summary
This study details a 920 MHz Ultra High Frequency (UHF) radio frequency identification (RFID) conductive fabric antenna. The research demonstrates that larger fabric antennas achieve significantly longer reading ranges, suitable for applications like entrance control.
Area of Science:
- Electrical Engineering
- Materials Science
- Electromagnetics
Background:
- Radio Frequency Identification (RFID) technology is crucial for automated identification and tracking.
- Conductive fabrics offer potential for integrated and flexible RFID antennas.
- Designing efficient UHF RFID antennas from conductive fabrics presents unique challenges due to material properties.
Purpose of the Study:
- To design and evaluate a 920 MHz UHF RFID conductive fabric tag antenna.
- To investigate the impact of fabric conductivity on antenna performance.
- To compare the performance of two different-sized fabric tag antennas.
Main Methods:
- Measured DC resistance and impedance of conductive fabrics using a DC multimeter and network analyzer.
- Calculated fabric conductivities and utilized them in CST simulations for antenna design.
- Fabricated and simulated two T-Matching structure UHF RFID tag antennas (80x40 mm and 40x23 mm).
- Evaluated antenna performance through reflection coefficient (S11), radar cross-section, and reading range measurements.
Main Results:
- Simulated and measured antenna characteristics were compared.
- The 80x40 mm fabric tag antenna achieved a reading range of approximately 4 meters.
- The 40x23 mm fabric tag antenna achieved a reading range of approximately 0.5 meters.
Conclusions:
- Conductive fabric tag antennas can be effectively designed and fabricated for UHF RFID applications.
- Antenna size significantly influences the reading range, with larger antennas performing better.
- These fabric RFID tags are suitable for integration into textiles for systems like entrance control.

