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Radiation analysis of an equivalent magnetic UHF-RFID tag located on a coated metallic sphere using UTD method

机译:使用UTD方法对位于涂层金属球上的等效磁性UHF-RFID标签进行辐射分析

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The radiation analysis of an equivalent magnetic UHF-RFID tag antenna located on a coated metallic sphere using UTD method is illustrated in this work. The conventional UHF-RFID tag can be represented by electric current source and is designed by employing the dipole antenna concept. The electromagnetic (EM) radiation characteristic of UHF-RFID tag mounted on the metallic and material coated metallic curved objects can be distorted because the electric field is parallel to the metallic surface. It is very important to include the metallic objects when designing the UHF-RFID tag. In this work, the uniform geometrical theory of diffraction (UTD) method is employed to predict the EM radiation characteristic of the electric current source and equivalent magnetic current sources mounted on a coated metallic sphere. It is noted that the equivalent magnetic current source provides broader beamwidth. This makes the communication area wider than the electric current source case. An example of UHF-RFID tag is designed in this work based on the equivalent magnetic current source or slotted antenna concept. The calculated result is confirmed by comparing with the CST Microwave studio simulation. It is confirmed that the UTD method is suitable for the radiation calculation of the tag mounted on material coated metallic curved objects.
机译:在这项工作中说明了使用UTD方法对位于涂层金属球体上的等效磁性UHF-RFID标签天线的辐射分析。常规的UHF-RFID标签可以用电流源表示,并通过采用偶极天线概念进行设计。由于电场平行于金属表面,因此安装在金属和涂覆材料的金属弯曲物体上的UHF-RFID标签的电磁(EM)辐射特性可能会失真。设计UHF-RFID标签时,包括金属物体非常重要。在这项工作中,采用统一的几何衍射理论(UTD)来预测安装在涂层金属球体上的电流源和等效磁电流源的EM辐射特性。注意,等效磁电流源提供了更宽的束宽。这使得通信区域比电流源情况更宽。在这项工作中,基于等效磁电流源或缝隙天线概念设计了一个UHF-RFID标签示例。通过与CST Microwave Studio仿真进行比较,可以确定计算结果。可以确定的是,UTD方法适用于安装在涂有材料的金属弯曲物体上的标签的辐射计算。

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