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A precise resonance frequency measurement method based on ISO-standardized setups for contactless chip cards

机译:基于ISO标准化设置的绝佳谐振频率测量方法,无接触式芯片卡

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摘要

A method for measuring the resonance frequency of contactless chip cards is proposed in this article. Compared to the vector network analyzer (VNA) based state-of-the-art method, the method gives a more accurate definition of resonance frequency, removes the subjectivity associated with the state-of-the-art method, and makes the measurement integrable into ISO-standardized test setups. Signal processing and system modeling are applied in order to determine the maximum active power in the chip card over a chosen frequency range. This is achieved by using a transfer function obtained from the model and by setting a chirp signal as input to the system. The determined maximum of active power is mapped to the corresponding frequency in the chirp signal, which is defined as the resonance frequency. The proposed method is verified by simulations and by comparing measurement results with the state-of-the-art. The results show that the proposed method offers significant advantages over the state-of-the-art method.
机译:本文提出了一种测量非接触芯片卡的共振频率的方法。与基于矢量网络分析仪(VNA)的最新方法相比,该方法提供了更准确的谐振频率定义,从而消除与最先进的方法相关的主观性,并使测量是可集的进入ISO标准化的测试设置。应用信号处理和系统建模,以便在所选频率范围内确定芯片卡中的最大电力。这是通过使用从模型获得的传递函数和将Chirp信号设置为输入到系统的输入来实现。所确定的最大功率电力被映射到啁啾信号中的相应频率,该啁啾信号被定义为谐振频率。通过模拟验证所提出的方法,并通过将测量结果与现有技术进行比较。结果表明,该方法与最先进的方法提供了显着的优势。

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