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T-matching networks for the efficient matching of practical RFID tags

机译:T匹配网络可有效匹配实际的RFID标签

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In this paper, we study T-matching networks that are commonly used for the efficient matching of UHF tags. In order to analyze relationship between T-matching geometry and antenna impedance, we interpret the transformer circuit as an equivalent circuit depending on the design parameters of the circuit. From the parametric study of the T-matching, we derive an optimized topology which is able to overcome electrically change of the geometry resulted from material loading. Next, based on the previous study, we design two types of tag antennas for practical item-level RFID applications that require the discrimination different objects. We calculate theoretically the minimum operating power of tags based on the computed antenna characteristics, antenna impedance, directivity, efficiency, regarding various dielectric constants. To verify the performance of the developed tags in practical conditions, we measure the minimum required power to activate tags on multiple objects in conjunction with commercial measurement system. As a result, the designed tags present almost consistent readability on materials from low to high dielectric constant. Thus, the results clearly verify that the appropriate T-matching geometry provides consistent readability in practical UHF RFID tags.
机译:在本文中,我们研究了通常用于UHF标签高效匹配的T匹配网络。为了分析T形匹配几何形状与天线阻抗之间的关系,我们根据电路的设计参数将变压器电路解释为等效电路。从T匹配的参数研究中,我们得出了一种优化的拓扑结构,该拓扑结构能够克服材料加载导致的几何形状的电气变化。接下来,基于先前的研究,我们为需要区分不同对象的实际项目级RFID应用设计了两种类型的标签天线。我们根据计算得出的天线特性,天线阻抗,方向性,效率以及各种介电常数,从理论上计算出标签的最小工作功率。为了验证在实际条件下开发的标签的性能,我们结合商业测量系统测量了激活多个物体上的标签所需的最小功率。结果,所设计的标签在从低介电常数到高介电常数的材料上呈现出几乎一致的可读性。因此,结果清楚地证明了合适的T匹配几何形状在实际的UHF RFID标签中提供了一致的可读性。

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