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实际条件下互感器的特性:单一及组合影响量对其宽带特性的影响

Characterization of Instrument Transformers under Realistic Conditions: Impact of Single and Combined Influence Quantities on Their Wideband Behavior.

作者信息

Letizia Palma Sara, Crotti Gabriella, Mingotti Alessandro, Tinarelli Roberto, Chen Yeying, Mohns Enrico, Agazar Mohamed, Istrate Daniela, Ayhan Burak, Çayci Hüseyin, Stiegler Robert

机构信息

Istituto Nazionale di Ricerca Metrologica (INRIM), Strada delle Cacce 91, 10135 Torino, Italy.

Department of Electrical, Electronic and Information Engineering, Guglielmo Marconi, Alma Mater Studiorum, University of Bologna, Viale del Risorgimento 2, 40136 Bologna, Italy.

出版信息

Sensors (Basel). 2023 Sep 12;23(18):7833. doi: 10.3390/s23187833.

Abstract

Instrument transformers (ITs) play a key role in electrical power systems, facilitating the accurate monitoring and measurement of electrical quantities. They are essential for measurement, protection, and metering in transmission and distribution grids and accurately reducing the grid voltage and current for low-voltage input instrumentation. With the increase in renewable energy sources, electronic converters, and electric vehicles connected to power grids, ITs now face challenging distorted conditions that differ from the nominal ones. The study presented in this paper is a collaborative work between national metrology institutes and universities that analyzes IT performance in measuring distorted voltages and currents in medium-voltage grids under realistic conditions. Both current and voltage measuring transformers are examined, considering influence quantities like the temperature, mechanical vibration, burden, adjacent phases, and proximity effects. The study provides detailed insights into measurement setups and procedures, and it quantifies potential errors arising from IT behavior in measuring distorted signals in the presence of the various considered influence quantities and their combinations. The main findings reveal that the temperature has the most evident impact on the inductive voltage transformer performance, as well as the burden, causing significant changes in ratio error and phase displacement at the lower temperatures. As for low-power ITs, establishing a priori the effects of adjacent phases and proximity on the frequency responses of low-power ITs is a complex matter, because of their different characteristics and construction solutions.

摘要

互感器在电力系统中起着关键作用,有助于准确监测和测量电量。它们对于输配电网络中的测量、保护和计量至关重要,并能精确降低电网电压和电流,以供低压输入仪表使用。随着连接到电网的可再生能源、电子转换器和电动汽车数量的增加,互感器如今面临着与标称情况不同的具有挑战性的畸变条件。本文所介绍的研究是国家计量机构与大学之间的合作成果,分析了在实际条件下中压电网中互感器在测量畸变电压和电流时的性能。对电流互感器和电压互感器都进行了研究,考虑了诸如温度、机械振动、负载、相邻相和邻近效应等影响量。该研究提供了对测量设置和程序的详细见解,并量化了在存在各种考虑的影响量及其组合的情况下,互感器在测量畸变信号时因自身行为而产生的潜在误差。主要研究结果表明,温度对感应式电压互感器的性能影响最为明显,负载也是如此,在较低温度下会导致变比误差和相位移发生显著变化。对于低功率互感器而言,由于其不同的特性和结构解决方案,事先确定相邻相和邻近效应对低功率互感器频率响应的影响是一件复杂的事情。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3020/10536484/bf7ef4a80faa/sensors-23-07833-g001.jpg

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