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Impedance Characterization of RFID Tag Antennas and Application in Tag Co-Design

机译:RFID标签天线的阻抗表征及标签协同设计中的应用

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摘要

In this paper, an experimental methodology for the characterization of the impedance of balanced RF identification (RFID) tag antennas is presented, and the application of the proposed method in RFID tag co-design is demonstrated. The balanced tag antenna is considered as a two-port network and the impedance of the antenna is characterized using network parameters. In the measurement, the antenna is connected to the two ports of a vector network analyzer through a test fixture. The influence of the test fixture is deembedded by using a port-extension technique and the antenna impedance can be extracted directly from the measured S -parameters. The proposed method is useful in practical RFID applications for co-designing the RFID tag with the attached platforms for enhancing the tag performance. An example of co-designing an ultra-high-frequency RFID tag with a plastic Sushi plate is demonstrated. The co-designed tag antenna achieves conjugate matching with the application-specific integrated circuit so that the reading range of the RFID tag is greatly enhanced.
机译:本文提出了一种平衡射频识别(RFID)标签天线阻抗表征的实验方法,并论证了所提方法在RFID标签协同设计中的应用。平衡标签天线被认为是一个双端口网络,天线的阻抗是使用网络参数来表征的。在测量中,天线通过测试夹具连接到矢量网络分析仪的两个端口。通过使用端口扩展技术去嵌入测试夹具的影响,并且可以直接从测量的 S 参数中提取天线阻抗。所提出的方法在实际的RFID应用中很有用,用于与附加平台共同设计RFID标签,以提高标签性能。演示了与塑料寿司盘共同设计超高频RFID标签的示例。共同设计的标签天线实现了与专用集成电路的共轭匹配,从而大大增强了RFID标签的读取范围。

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