液体灌装瓶上的高性能超高频射频标签天线

Sailing He, Yiming Zhang, Laijun Li, Yuefeng Lu, Y. Zhang, Hui Liu
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引用次数: 15

摘要

由于高导电性、高介电常数和液体的多样性,在充液瓶上设计高性能超高频RFID标签天线具有挑战性。提出了一种系统的设计液体瓶上高性能超高频RFID标签天线的方法。首先提出了一种由折叠偶极子和环匹配结构组成的简单设计,用于放置在水瓶上的标签天线。采用协同设计的方法,使水和瓶表面成为标签天线的一部分,消除了环境的显著影响。在915 MHz下的测量结果表明,简单设计的读数范围在没有水瓶的情况下可以达到8 m,当放置在水瓶上时可以达到4.2 m。然后对水瓶上的折叠偶极子进行优化,显著提高了增益,在915 MHz时实现了- 5.54 dBi的最大增益。此外,通过将阻抗匹配结构中的环路数从1个增加到3个,大大提高了水瓶上标签天线的阻抗带宽,实现了超过100 MHz(仿真)或84 MHz(实验)的−6 dB阻抗带宽。当标签天线放置在915 MHz的水瓶上时,读数范围为5.6 m。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HIGH PERFORMANCE UHF RFID TAG ANTENNAS ON LIQUID-FILLED BOTTLES
It is challenging to design a high-performance UHF RFID tag antenna on a liquid-filled bottle due to the high conductivity, high permittivity, and the variety of liquids. A systematic way how to design a high-performance UHF RFID tag antenna on a liquid-filled bottle is presented. A simple design consisting of a folded dipole and a loop matching structure is first proposed for a tag antenna placed on a water bottle. A co-design approach is adopted to make the water and bottle surface become a part of the tag antenna to eliminate the significant influence of the environment. The measurement results at 915 MHz show that the reading range of the simple design can reach 8 m in the absence of the water bottle and reach 4.2 m when it is placed on a water bottle. The folded dipole on the water bottle is then optimized to improve the gain significantly, and a maximum gain of −5.54 dBi is achieved at 915 MHz. Furthermore, the impedance bandwidth for the tag antenna on the water bottle is greatly improved by increasing the number of loops in the impedance matching structure from one to three, and the −6 dB impedance bandwidth of over 100 MHz (simulation) or 84 MHz (experiment) is achieved. A reading range of 5.6 m is achieved when the tag antenna is placed on a water bottle at 915 MHz.
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