Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method

The simulation model of the overhead transmission line channel implemented in PSCAD software allowing researches of location signal propagation via overhead lines of the distribution networks 6–35 kV under conditions of single phase-to-ground fault is considered. The model reflectograms are compared...

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Main Authors: Renat Minullin, Yuri Piskovatsky, Vasil Kasimov
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/76/e3sconf_rses2020_01043.pdf
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author Renat Minullin
Yuri Piskovatsky
Vasil Kasimov
author_facet Renat Minullin
Yuri Piskovatsky
Vasil Kasimov
author_sort Renat Minullin
collection DOAJ
description The simulation model of the overhead transmission line channel implemented in PSCAD software allowing researches of location signal propagation via overhead lines of the distribution networks 6–35 kV under conditions of single phase-to-ground fault is considered. The model reflectograms are compared with their appropriate experimental reflectograms registered under the laboratory and field conditions for the overhead lines during simulation of various types of the single phase-to-ground faults.
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spelling doaj.art-c813120c7a4042e4acd69b5d52217f2b2022-12-21T18:10:53ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012160104310.1051/e3sconf/202021601043e3sconf_rses2020_01043Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location MethodRenat Minullin0Yuri Piskovatsky1Vasil Kasimov2Kazan State Power Engineering UniversityKazan State Power Engineering UniversityKazan State Power Engineering UniversityThe simulation model of the overhead transmission line channel implemented in PSCAD software allowing researches of location signal propagation via overhead lines of the distribution networks 6–35 kV under conditions of single phase-to-ground fault is considered. The model reflectograms are compared with their appropriate experimental reflectograms registered under the laboratory and field conditions for the overhead lines during simulation of various types of the single phase-to-ground faults.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/76/e3sconf_rses2020_01043.pdf
spellingShingle Renat Minullin
Yuri Piskovatsky
Vasil Kasimov
Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method
E3S Web of Conferences
title Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method
title_full Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method
title_fullStr Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method
title_full_unstemmed Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method
title_short Model and Experimental Detection of Single Phase-to-Ground Fault for Overhead Wires in Distribution Networks by Location Method
title_sort model and experimental detection of single phase to ground fault for overhead wires in distribution networks by location method
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/76/e3sconf_rses2020_01043.pdf
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AT yuripiskovatsky modelandexperimentaldetectionofsinglephasetogroundfaultforoverheadwiresindistributionnetworksbylocationmethod
AT vasilkasimov modelandexperimentaldetectionofsinglephasetogroundfaultforoverheadwiresindistributionnetworksbylocationmethod