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Compact Scalable Modeling of Chipless RFID Tag Based on High-Impedance Surface

机译:基于高阻抗表面的无芯片RFID标签的紧凑可扩展建模

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摘要

This paper proposes a compact model for chipless radio frequency identification (RFID) tag. This compact scalable model consists of capacitors, inductors, and resistors of which their values are directly described by the physical dimension of the chipless tag. Moreover, based on this compact model, radar cross section of chipless RFID tag is predicted, by analyzing polarizability based on surface current distribution in different modes. To validate the proposed model, a 5-bit chipless RFID tag based on high-impedance surface (HIS) is presented, with good agreement among modeled, simulated, and measured results. A wide range of physical parameters have also been validated to show the scalability. This compact scalable model of chipless RFID tag not only simplifies the tag design, but also provides an insight understanding of the HIS structure.
机译:本文提出了一种用于无芯片射频识别(RFID)标签的紧凑模型。这种紧凑的可扩展模型由电容器,电感器和电阻器组成,它们的值直接由无芯片标签的物理尺寸描述。此外,基于该紧凑模型,通过基于不同模式下的表面电流分布分析极化率,可以预测无芯片RFID标签的雷达横截面。为了验证所提出的模型,提出了一种基于高阻抗表面(HIS)的5位无芯片RFID标签,在建模,仿真和测量结果之间具有良好的一致性。还已验证了各种物理参数,以显示可伸缩性。这种紧凑的无芯片RFID标签可扩展模型不仅简化了标签设计,而且还提供了对HIS结构的深刻理解。

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