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Physics-based approach for antenna design optimization of RFID tags mounted on and inside material layers

机译:基于物理的天线设计优化RFID标签,安装在材料层上外的RFID标签

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A design approach is presented for UHF RFID tag antennas operating in the vicinity of dielectric media using the layered Green's function and the effective permittivity of a material with finite thickness. It is noted that materials detune the antenna and alter the gain pattern. In this work we propose a broadband tag antenna design that functions on materials across various permittivity and thicknesses. The analytic approach allows optimal placement to be determined within the dielectric. Experimental results show that the proposed tag achieves better performance when mounted on a wide range of materials as compared to commercial tags.
机译:为UHF RFID标签天线提供了一种设计方法,其使用分层的绿色功能和有限厚度的材料的有效介电常数。 有人指出,材料刺激天线并改变增益模式。 在这项工作中,我们提出了一种宽带标签天线设计,可在各种介电常数和厚度上运行材料。 分析方法允许在电介质内确定最佳放置。 实验结果表明,与商业标签相比,该标签在宽范围内安装了更好的性能。

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