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Design and Experimental Validation of Multi-Frequency Impedance Measurement System

机译:多频阻抗测量系统的设计与实验验证

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Commercially available impedance meters can only measure at one frequency at the time. In this paper, we propose and validate multi-frequency impedance meter capable of simultaneous impedance measurement for several frequencies, which is very advantageous in engineering practice. The proposed system is based on the conventional auto-balancing bridge method and adapted to cooperate with an inductive-loop sensor for impedance measurement simultaneously at 3 frequencies. The hardware of the proposed system consists of the measurement bridge and the PXI module equipped with a field programmable gate array (FPGA) card, and analogue-to-digital and digital-to-analogue converters. Multi-frequency excitation source, vector voltmeters, and measurement algorithms are implemented in the FPGA and PXI. The proposed impedance measurement system is validated by comparison with a commercial impedance analyzer. The results revealed that the proposed system has high speed (less than 10 ms per measurement) and high relative accuracy in the frequency range of 6-15 kHz.
机译:市售的阻抗仪仅在当时的一个频率测量。在本文中,我们提出并验证了能够同时对几个频率进行阻抗测量的多频阻仪,这在工程实践中是非常有利的。所提出的系统基于传统的自动平衡桥方法,并且适于在3个频率下同时与电感环传感器配合用于阻抗测量。所提出的系统的硬件由测量桥和配备有现场可编程门阵列(FPGA)卡的PXI模块以及模拟到数字和数模转换器。多频激励源,矢量电压表和测量算法在FPGA和PXI中实现。通过与商业阻抗分析仪进行比较验证所提出的阻抗测量系统。结果表明,该系统具有高速(每次测量小于10ms),频率范围为6-15 kHz的高相对精度。

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