Practical comparisons among electronic energy meters, a precision energy meter and IEEE1459 for reactive energy measurements, under unbalanced and non-sinusoidal conditions

G. Melo, A. Fazio, L. P. Sampaio, Manuel de Arriaga Brito, R. N. Oliveira, C. Canesin
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引用次数: 3

Abstract

This paper presents a practical experimentation for comparing reactive/non-active energy measures, considering three-phase four-wire non-sinusoidal and unbalanced circuits, involving five different commercial electronic meters. The experimentation set provides separately voltage and current generation, each one with any waveform involving up to fifty-first harmonic components, identically compared with acquisitions obtained from utility. The experimental accuracy is guaranteed by a class A power analyzer, according to IEC61000-4-30 standard. Some current and voltage combination profiles are presented and confronted with two different references of reactive/non-active calculation methodologies; instantaneous power theory and IEEE 1459-2010. The first methodology considers the instantaneous power theory, present into the advanced mathematical internal algorithm from WT3000 power analyzer, and the second methodology, accomplish with IEEE 1459-2010 standard, uses waveform voltage and current acquisition from WT3000 as input data for a virtual meter developed on Mathlab/Simulink software.
在不平衡和非正弦条件下,电子电能表、精密电能表和IEEE1459无功能量测量的实际比较
本文介绍了一个比较无功/无功能量测量的实际实验,考虑三相四线非正弦和不平衡电路,涉及五种不同的商用电子电表。实验装置分别提供电压和电流的产生,每一个都有任何波形,涉及多达51个谐波分量,与从公用事业获得的数据相同。实验精度由a级功率分析仪保证,符合IEC61000-4-30标准。给出了一些电流和电压的组合曲线,并面对了两种不同的无功/无功计算方法的参考;瞬时功率理论,IEEE 1459-2010。第一种方法将瞬时功率理论引入到WT3000功率分析仪的高级数学内部算法中,第二种方法根据IEEE 1459-2010标准,利用WT3000的波形电压和电流作为输入数据,在Mathlab/Simulink软件上开发虚拟电表。
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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