The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics

Detection of high resistance earth faults in medium voltage networks is an important problem due to ineffectiveness of traditional earth fault protections. Such short circuits can be detected by the criterion of a reactive power of higher harmonics for zero sequence current and voltage. The main pro...

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Main Authors: Marciniak Lubomir, Piątek Mateusz
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/10/e3sconf_pe2019_02008.pdf
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spelling doaj-e1ec884e534949dd95edb248d3d825592021-02-02T00:58:57ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01840200810.1051/e3sconf/20198402008e3sconf_pe2019_02008The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonicsMarciniak Lubomir0Piątek Mateusz1Institute of Electric Power Engineering, Technical University of CzestochowaInstitute of Electric Power Engineering, Technical University of CzestochowaDetection of high resistance earth faults in medium voltage networks is an important problem due to ineffectiveness of traditional earth fault protections. Such short circuits can be detected by the criterion of a reactive power of higher harmonics for zero sequence current and voltage. The main problem is determination of the power setting value in the protection, which depends on the asymmetry of phase-to-earth capacitances and higher harmonics in supply voltages, which are generated by non-linear loads. The intensive tests of the asymmetry of the zero sequence currents and voltages for harmonics and their reactive power have been carried out in 15 kV compensated network as a function of all relevant parameters, i.e.: maximum capacitance deviation of the network and protected line, percentage content of harmonics in supply voltages, capacitive current of the network and the line. It has been shown that third harmonics of the zero sequence voltage and current are the best suited for practical use, since the asymmetry reactive power of these components is the smallest among the considered harmonics and the protection sensitivity will be the highest.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/10/e3sconf_pe2019_02008.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Marciniak Lubomir
Piątek Mateusz
spellingShingle Marciniak Lubomir
Piątek Mateusz
The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
E3S Web of Conferences
author_facet Marciniak Lubomir
Piątek Mateusz
author_sort Marciniak Lubomir
title The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
title_short The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
title_full The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
title_fullStr The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
title_full_unstemmed The influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
title_sort influence of the network asymmetry on the settings and sensitivity of an earth fault protection using higher harmonics
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2019-01-01
description Detection of high resistance earth faults in medium voltage networks is an important problem due to ineffectiveness of traditional earth fault protections. Such short circuits can be detected by the criterion of a reactive power of higher harmonics for zero sequence current and voltage. The main problem is determination of the power setting value in the protection, which depends on the asymmetry of phase-to-earth capacitances and higher harmonics in supply voltages, which are generated by non-linear loads. The intensive tests of the asymmetry of the zero sequence currents and voltages for harmonics and their reactive power have been carried out in 15 kV compensated network as a function of all relevant parameters, i.e.: maximum capacitance deviation of the network and protected line, percentage content of harmonics in supply voltages, capacitive current of the network and the line. It has been shown that third harmonics of the zero sequence voltage and current are the best suited for practical use, since the asymmetry reactive power of these components is the smallest among the considered harmonics and the protection sensitivity will be the highest.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/10/e3sconf_pe2019_02008.pdf
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