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Monte Carlo simulation of an radio frequency identification system with moving transponders using the partial element equivalent circuit method

机译:采用部分元件等效电路方法的带有移动应答器的射频识别系统的蒙特卡罗模拟

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摘要

When designing an radio frequency identification system it is important to take both the position and the movement of the transponders into account. In this study, a simulation method that enables the description of a complete RFID system including moving and rotating transponders as well as a complex, industrial environment is presented. By using the partial element equivalent circuit method to calculate the magnetic field generated by the reader antenna and describing the transponders using a magnetic dipole, it is possible to use the Monte Carlo method to describe the dynamic behaviour of the complete system. The method is used in this study to describe the difference in performance between two different reader antennas and these results are also compared to measurements of similar systems operating in an industrial environment. The difference in performance between the two systems is similar in both the simulations and the measurements. A small discrepancy was seen between the results from the simulations and the measurements which is for the most part because of the limited read rate of the RFID systems used in the measurements.
机译:在设计射频识别系统时,必须同时考虑应答器的位置和运动。在这项研究中,提出了一种仿真方法,该方法能够描述包括移动和旋转应答器以及复杂的工业环境在内的完整RFID系统。通过使用部分元件等效电路方法来计算读取器天线产生的磁场并使用磁偶极子描述应答器,可以使用蒙特卡洛方法来描述整个系统的动态行为。该方法在本研究中用于描述两个不同阅读器天线之间的性能差异,并且还将这些结果与在工业环境中运行的类似系统的测量结果进行比较。在仿真和测量中,两个系统之间的性能差异相似。在仿真结果和测量结果之间发现很小的差异,这在很大程度上是由于测量中使用的RFID系统的读取速率有限。

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