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Frequency Synchronization Analysis in Digital lock-in Methods for Bio-impedance Determination

机译:确定生物阻抗的数字锁定方法中的频率同步分析

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The lock-in method is one of the most frequently used methods for reconstruction of measured signals and as such frequently applied in the (bio)impedance method to determine the modulus and phase of the (bio)impedance. In implementation of the method in a (bio)impedance measurement device one has to consider possible non synchronized frequencies of the reference and the analyzed signals as well as potential sources of noise. In this work we analyzed these errors theoretically and experimentally. We show that both amplitude and phase errors depend on the relative difference of the frequencies of the reference and investigated signal as well as the number of integration periods. Theoretically, these errors vanish during the determination of the (bio)impedance modulus and phase. In practical implementation the inaccuracies appear at points of very low determined signal amplitudes due to the limited accuracy of analog to digital converters and are distributed around these points due to other sources of noise inherent in implementation of the measurement device.
机译:锁定方法是用于重建测量信号的最常用方法之一,因此常用于(生物)阻抗方法中以确定(生物)阻抗的模数和相位。在(生物)阻抗测量设备中实施该方法时,必须考虑参考信号和分析信号的可能不同步频率以及潜在的噪声源。在这项工作中,我们从理论上和实验上分析了这些错误。我们表明,幅度和相位误差均取决于参考信号和所研究信号的频率的相对差异以及积分周期的数量。从理论上讲,这些误差在确定(生物)阻抗模量和相位时消失。在实际的实施中,由于模数转换器的精度有限,在确定的信号幅度非常低的点处出现了误差,并且由于在测量设备的实施中固有的其他噪声源,这些误差在这些点附近分布。

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