Comparative Study of Different Materials for High Frequency Tag Antenna for Radio Frequency Identification (RFID) Applications

Floyd Ferrant B. Fortes, Olga Joy Labajo-Gerasta
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引用次数: 1

Abstract

Radio Frequency Identification (RFID) system is an emerging technology for automatic identification, where it automatically identifies things between a stationary location and movable object. The antenna plays a crucial role for the performance of the RFID system, thus determining the appropriate material used for antenna is important. This paper presents a comparative study of different materials for passive high frequency (HF) tag antenna for RFID applications. Three materials are being utilized for three different fabrication methods which are Printed Circuit Board (PCB), Copper Tape, and Magnetic Wire. Every fabrication method has a variation of 5 turns and 7 turns for the coil antenna. The type of antenna being designed are planar rectangular coil and multilayer rectangular coil. The design undergone thorough simulation through Keysight Advance Design System (ADS). The fabricated designs are tested using RFID Reader and Digital Oscilloscope. An analysis and comparison of results were done and dictates that the received voltage is inversely proportional to the reading distance. the number of turns is also inversely proportional with the received voltage. Copper tape with 5 turns garners the highest received voltage at minimum distance, which is 904 mV. PCB is suited for moderate received voltage at minimum distance. Meanwhile, magnetic wire with 7 turns has the highest maximum reading distance of 11 cm and highest LED turn-on distance of 6 cm. Moreover, cost analysis of materials is being included to determine which material is most suitable for low-cost applications.
射频识别(RFID)应用中不同材料高频标签天线的比较研究
射频识别(RFID)系统是一种新兴的自动识别技术,它可以自动识别固定位置和可移动物体之间的物体。天线对RFID系统的性能起着至关重要的作用,因此确定合适的天线材料非常重要。本文对用于RFID应用的无源高频(HF)标签天线的不同材料进行了比较研究。三种材料被用于三种不同的制造方法,即印刷电路板(PCB),铜带和磁线。对于线圈天线,每种制造方法都有5匝和7匝的变化。设计的天线类型有平面矩形线圈和多层矩形线圈。该设计通过是德科技先进设计系统(ADS)进行了彻底的仿真。利用RFID读写器和数字示波器对设计进行了测试。结果表明,接收电压与读取距离成反比。匝数也与接收电压成反比。5匝铜带在最小距离处获得最高接收电压,为904 mV。PCB适用于在最小距离下的中等接收电压。同时,7匝磁线的最大读取距离为11 cm, LED的最大导通距离为6 cm。此外,还包括材料的成本分析,以确定哪种材料最适合低成本应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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