Harmonic voltage measurement error of the capacitor voltage transformer.

This paper explores the mechanism for the harmonic voltage measurement error (HVME) of a capacitor voltage transformer (CVT) in a comprehensive way and develops a practical error correction method to improve the harmonic measurement performance of a CVT. The harmonic equivalent circuit (HEC) of CVTs...

Full description

Bibliographic Details
Main Authors: Jian Le, Hao Zhang, Chao Gao, Qian Zhou
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2018-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC6219776?pdf=render
id doaj-238374254a7a45359d8485beeef38ff8
record_format Article
spelling doaj-238374254a7a45359d8485beeef38ff82020-11-25T01:57:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032018-01-011311e020523110.1371/journal.pone.0205231Harmonic voltage measurement error of the capacitor voltage transformer.Jian LeHao ZhangChao GaoQian ZhouThis paper explores the mechanism for the harmonic voltage measurement error (HVME) of a capacitor voltage transformer (CVT) in a comprehensive way and develops a practical error correction method to improve the harmonic measurement performance of a CVT. The harmonic equivalent circuit (HEC) of CVTs with different types of dampers are established and the parameter value calculation methods of the circuit elements are presented. Characteristics of the individual inherent resonance mode of the HEC, including the resonant frequency, the resonant type and the circuit elements involved, are analyzed systematically. Centered on resonance mode formulation, an universal error correction method for CVTs in measuring harmonic voltage is proposed based on the piecewise fitting of the transformation ratio. A physical experimental platform available for low-voltage CVTs is developed in laboratory, which utilizes a 10-kV harmonic generator and a step-up transformer to provide harmonic signals with high voltage level. Moreover, a novel experimental scheme for testing the HVME of high-voltage CVTs is proposed based on alternating current/direct current (AC/DC) filters. Experiments are conducted on these experimental platforms to test the HVME of a 35-kV CVT in laboratory and a 525-kV CVT in a back-to-back DC converter station. The experimental results verify the validity of the built HECs of CVTs, the resonant mode analysis results and the resonant frequency calculation method. Finally, the effectiveness of the proposed harmonic error correction method is proved by several examples.http://europepmc.org/articles/PMC6219776?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jian Le
Hao Zhang
Chao Gao
Qian Zhou
spellingShingle Jian Le
Hao Zhang
Chao Gao
Qian Zhou
Harmonic voltage measurement error of the capacitor voltage transformer.
PLoS ONE
author_facet Jian Le
Hao Zhang
Chao Gao
Qian Zhou
author_sort Jian Le
title Harmonic voltage measurement error of the capacitor voltage transformer.
title_short Harmonic voltage measurement error of the capacitor voltage transformer.
title_full Harmonic voltage measurement error of the capacitor voltage transformer.
title_fullStr Harmonic voltage measurement error of the capacitor voltage transformer.
title_full_unstemmed Harmonic voltage measurement error of the capacitor voltage transformer.
title_sort harmonic voltage measurement error of the capacitor voltage transformer.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2018-01-01
description This paper explores the mechanism for the harmonic voltage measurement error (HVME) of a capacitor voltage transformer (CVT) in a comprehensive way and develops a practical error correction method to improve the harmonic measurement performance of a CVT. The harmonic equivalent circuit (HEC) of CVTs with different types of dampers are established and the parameter value calculation methods of the circuit elements are presented. Characteristics of the individual inherent resonance mode of the HEC, including the resonant frequency, the resonant type and the circuit elements involved, are analyzed systematically. Centered on resonance mode formulation, an universal error correction method for CVTs in measuring harmonic voltage is proposed based on the piecewise fitting of the transformation ratio. A physical experimental platform available for low-voltage CVTs is developed in laboratory, which utilizes a 10-kV harmonic generator and a step-up transformer to provide harmonic signals with high voltage level. Moreover, a novel experimental scheme for testing the HVME of high-voltage CVTs is proposed based on alternating current/direct current (AC/DC) filters. Experiments are conducted on these experimental platforms to test the HVME of a 35-kV CVT in laboratory and a 525-kV CVT in a back-to-back DC converter station. The experimental results verify the validity of the built HECs of CVTs, the resonant mode analysis results and the resonant frequency calculation method. Finally, the effectiveness of the proposed harmonic error correction method is proved by several examples.
url http://europepmc.org/articles/PMC6219776?pdf=render
work_keys_str_mv AT jianle harmonicvoltagemeasurementerrorofthecapacitorvoltagetransformer
AT haozhang harmonicvoltagemeasurementerrorofthecapacitorvoltagetransformer
AT chaogao harmonicvoltagemeasurementerrorofthecapacitorvoltagetransformer
AT qianzhou harmonicvoltagemeasurementerrorofthecapacitorvoltagetransformer
_version_ 1724974787853287424