4.8 Article

Research on a Composite Voltage and Current Measurement Device for HVDC Networks

期刊

IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS
卷 68, 期 9, 页码 8930-8941

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TIE.2020.3013772

关键词

Current measurement; Voltage measurement; Conductors; Sensor arrays; Harmonic analysis; Measurement errors; Magnetic field measurement; DC measurement; digital integration; Hall sensor array; Rogowski coil

资金

  1. National Natural Science Foundation of China [51507091]

向作者/读者索取更多资源

This article introduces a high voltage direct current measurement method for smart grid protection and control applications, utilizing Hall sensor array, voltage divider circuit, Rogowski coil, and fast Fourier transform algorithm. Experimental results demonstrate high accuracy in voltage and current measurement, with minimal errors in harmonic measurement.
With the global trend to develop digital substation automation systems, measurement devices are required to be reliable, of small size and light weight and of acceptable accuracy in a wide frequency band. This article presents a combined high voltage direct current measurement method which comprises the above-mentioned features that makes it suitable for smart grids protection and control applications. The proposed measurement method utilizes Hall sensor array for dc current measurement. DC voltage is measured using a voltage divider circuit while the harmonic currents are measured using a square Rogowski coil made of four straight bars along with a high precision digital integration algorithm. A four-spectral line interpolation fast Fourier transform algorithm based on trapezoidal convolution window is proposed to improve the extraction accuracy of the dc and harmonic components from the measured signal. Experimental results show that the error variation of the proposed method is less than 0.098% for voltage measurement while it is less than 0.104% for current measurement. The harmonic measurement ratio error is less than 0.2% and the angle error is less than 8'.

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