基于实验结果的电能表测量误差预测建模方法

F. Gonçalves, C. Canesin, J. Pinto, L. Galotto, R. B. Godoy
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引用次数: 4

摘要

本文提出了一种通用的建模方法来研究和预测感应式和电子式有功电能表的测量误差。测量误差建模基于广义加性模型(GAM)、脊回归法和测量系统提供的仪表实验结果。该测量系统提供了一个包含26对测试波形的数据库,这些波形捕获于一个真实的配电系统中,具有不同的负载特性(工业、商业、农业和住宅),涵盖了不同的谐波畸变以及平衡和不平衡电压条件。为了说明所提出的方法,讨论了测量误差模型,并以三维图形的形式给出了实验测试的几个结果,并将其推广为误差方程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling approach based on experimental results for prediction of measurement errors in energy meters
This paper presents a general modeling approach to investigate and to predict measurement errors in active energy meters both induction and electronic types. The measurement error modeling is based on generalized additive model (GAM), ridge regression method and experimental results of meter provided by a measurement system. The measurement system provides a database of 26 pairs of test waveforms captured in a real electrical distribution system, with different load characteristics (industrial, commercial, agricultural, and residential), covering different harmonic distortions, and balanced and unbalanced voltage conditions. In order to illustrate the proposed approach, the measurement error models are discussed and several results, which are derived from experimental tests, are presented in the form of three-dimensional graphs, and generalized as error equations.
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