Accuracy of voltage instrument transformers for harmonic measurements in elering's 330-kV-transmission network

Jan Meyer, R. Stiegler, J. Kilter
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引用次数: 2

Abstract

The measurement of harmonic and interharmonic voltages up to 2.5 kHz is an inherent part of the Power Quality assessment in electrical networks. In the past the monitoring of harmonic voltages has been of minor importance for many transmission system operators (TSO). As the number of power electronics connected to the transmission grid (e.g. self-commutated HVDC stations or converters in large wind power plants) increases continuously, the concern of TSOs regarding the harmonic levels grows as well. This is also confirmed by the recent significant increase of installed Power Quality monitors in transmission grids [1]. In many cases the traditional voltage instrument transformers (VT), which are only designed to have a high accuracy at rated frequency, are used for voltage harmonic measurements. This questions the accuracy of the harmonic measurements and the reliability of any compliance assessment (e.g. against existing planning levels). The paper illustrates the challenges of harmonic voltage measurements from the viewpoint of a TSO. After a quick description of the initial situation the paper presents and discusses the measurements of the frequency response characteristic of different VTs and their impact on the accuracy of voltage harmonic measurements.
elering 330kv输电网谐波测量用电压互感器的精度
谐波电压和谐波间电压的测量是电网电能质量评估的重要组成部分。在过去,谐波电压的监测对许多输电系统运营商(TSO)来说并不重要。随着与输电网相连的电力电子设备(如自换向高压直流站或大型风力发电厂的变流器)数量的不断增加,tso对谐波水平的关注也在增加。最近输电网中电能质量监测器安装数量的显著增加也证实了这一点[1]。在许多情况下,传统的电压互感器(VT)用于电压谐波测量,其设计只是为了在额定频率下具有较高的精度。这对谐波测量的准确性和任何符合性评估的可靠性提出了质疑(例如,针对现有的规划水平)。本文从TSO的角度阐述了谐波电压测量的挑战。在简要介绍了初始情况之后,本文介绍并讨论了不同电压点的频率响应特性的测量及其对电压谐波测量精度的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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