High precision impedance measurement based on gigabit transceiver

Yang Wanyu, Liu Songlin, Liu Dan, Zhao Yijiu, Yu Zhonghao, Da Zhijian
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Abstract

In this study, impedance measurement is implemented using the vector current-voltage method. The zero-crossing method is used to separate the real and the imaginary parts of the impedance vector, and the phase difference information is acquired using the high-speed data acquisition method. However, the limitation of the resolution of the phase difference often prevents the improvement of the accuracy of the impedance measurement. Therefore, in this paper, we propose a method for high-resolution phase measurement based on high-speed acquisition technology. Using the gigabit transceiver integrated in the XILINX K-7 Series field-programmable gate arrays, we achieve a sampling rate of 6 Gbps or higher, thereby improving the resolution of the phase difference time and considerably improving the accuracy of the impedance measurement.
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基于千兆收发器的高精度阻抗测量
在本研究中,阻抗测量采用矢量电流-电压法实现。采用过零法分离阻抗矢量的实部和虚部,采用高速数据采集方法获取相位差信息。然而,相位差分辨率的限制往往阻碍了阻抗测量精度的提高。因此,本文提出了一种基于高速采集技术的高分辨率相位测量方法。使用集成在XILINX K-7系列现场可编程门阵列中的千兆收发器,我们实现了6 Gbps或更高的采样率,从而提高了相位差时间的分辨率,并大大提高了阻抗测量的精度。
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