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Modeling of the Passive UHF RFID Multipath Channel for Tag Read Region Estimation

机译:用于标签读取区域估计的无源UHF RFID多径通道建模

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The estimation of tag read and no-read zones is the most important preliminary planning step in radio-frequency identification (RFID) system installations. Today, in the ultra-high frequency band (UHF: 860-960 MHz), this estimation is based on either a free-space or a simplified multipath channel model for the signal propagation in the wireless link between the interrogator and the tag. Using measurements in a standard multipath indoor environment, this paper proves that recent approaches are not able to estimate tag read regions in a given passive UHF RFID system setup with high reliability. A modified multipath channel model is presented, that considers environmental and setup specific properties as well as an arbitrary number of signal paths to achieve a more accurate estimation. It includes the orientation of the tag antenna and the interrogator antenna, their polarizations and their three-dimensional gain patterns, as well as complex reflection coefficients for the reflected signal paths. The presented model equations are ready to use and are implemented into a flexible, easy-to-use, and easy-to-setup simulation environment with low computing times. It predicts the tag read regions separately for the downlink and the uplink and then combines the results for an overall estimation. The comparison of read region simulations and tag readability measurements shows that the our model delivers a 87.2 % reliability in the prediction of the tag read regions. The results of the estimation can be used to optimize RFID system setups in a way that read regions are maximized.
机译:标签读取区域和未读取区域的估计是射频识别(RFID)系统安装中最重要的初步计划步骤。如今,在超高频带(UHF:860-960 MHz)中,此估计基于自由空间或简化的多径信道模型,用于信号在询问器和标签之间的无线链路中传播。通过在标准的多径室内环境中进行测量,本文证明了最新方法无法在给定的无源UHF RFID系统设置中以高可靠性估算标签读取区域。提出了一种改进的多径信道模型,该模型考虑了环境和设置的特定属性以及任意数量的信号路径,以实现更准确的估计。它包括标签天线和询问器天线的方向,极化和三维增益模式,以及反射信号路径的复数反射系数。所提供的模型方程式随时可用,并在计算时间短的灵活,易于使用和易于设置的仿真环境中实现。它分别为下行链路和上行链路预测标签读取区域,然后组合结果以进行整体估算。读取区域模拟和标签可读性测量结果的比较表明,我们的模型在标签读取区域的预测中可提供87.2%的可靠性。估计结果可用于以最大化读取区域的方式优化RFID系统设置。

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