A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation

Introduction. The wave parameters of power cables with polymer insulation differ significantly from the parameters of overhead lines and power transformers. As a result, there are more and more objects in electrical networks for which the occurrence of complex multi frequency transients, accompanied...

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Main Authors: G. V. Bezprozvannych, I. A. Kostiukov
Format: Article
Language:English
Published: National Technical University "Kharkiv Polytechnic Institute" 2021-06-01
Series:Electrical engineering & Electromechanics
Subjects:
Online Access:http://eie.khpi.edu.ua/article/view/234481/233447
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author G. V. Bezprozvannych
I. A. Kostiukov
author_facet G. V. Bezprozvannych
I. A. Kostiukov
author_sort G. V. Bezprozvannych
collection DOAJ
description Introduction. The wave parameters of power cables with polymer insulation differ significantly from the parameters of overhead lines and power transformers. As a result, there are more and more objects in electrical networks for which the occurrence of complex multi frequency transients, accompanied by dangerous overvoltages, should be expected. Purpose. To develop a computational model of the complex impedance of high-voltage single-core power cables of coaxial design required to determine the frequency dependencies of the active resistance and inductance of the conductive core and metal shield, taking into account the surface effect and proximity effect. Methodology. The method is based on solving a system of linear algebraic Kirchhoff equations (SLAE) for magnetically coupled contours. SLAE can be used to calculate conductors taking into account the skin effect and proximity effect. Practical value. The developed model is the basis for determining the characteristic impedance of high-voltage single-core power cables in a wide range of frequencies required to establish adequate criteria for evaluating the parameters of high-frequency effects critical for cross linked polyethylene insulation.
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spelling doaj.art-ae16761488c743759ad04992a458f5c02022-12-21T23:00:47ZengNational Technical University "Kharkiv Polytechnic Institute"Electrical engineering & Electromechanics2074-272X2309-34042021-06-013475110.20998/2074-272X.2021.3.08A calculation model for determination of impedance of power high voltage single-core cables with polymer insulationG. V. Bezprozvannych0https://orcid.org/0000-0002-9584-3611I. A. Kostiukov1https://orcid.org/0000-0002-8923-0579National Technical University «Kharkiv Polytechnic Institute», UkraineNational Technical University «Kharkiv Polytechnic Institute», UkraineIntroduction. The wave parameters of power cables with polymer insulation differ significantly from the parameters of overhead lines and power transformers. As a result, there are more and more objects in electrical networks for which the occurrence of complex multi frequency transients, accompanied by dangerous overvoltages, should be expected. Purpose. To develop a computational model of the complex impedance of high-voltage single-core power cables of coaxial design required to determine the frequency dependencies of the active resistance and inductance of the conductive core and metal shield, taking into account the surface effect and proximity effect. Methodology. The method is based on solving a system of linear algebraic Kirchhoff equations (SLAE) for magnetically coupled contours. SLAE can be used to calculate conductors taking into account the skin effect and proximity effect. Practical value. The developed model is the basis for determining the characteristic impedance of high-voltage single-core power cables in a wide range of frequencies required to establish adequate criteria for evaluating the parameters of high-frequency effects critical for cross linked polyethylene insulation.http://eie.khpi.edu.ua/article/view/234481/233447power cablescomplex resistancemagnetically coupled circuitssystem of linear algebraic equationsconductorscreencoefficient of irregularity of current distribution
spellingShingle G. V. Bezprozvannych
I. A. Kostiukov
A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation
Electrical engineering & Electromechanics
power cables
complex resistance
magnetically coupled circuits
system of linear algebraic equations
conductor
screen
coefficient of irregularity of current distribution
title A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation
title_full A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation
title_fullStr A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation
title_full_unstemmed A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation
title_short A calculation model for determination of impedance of power high voltage single-core cables with polymer insulation
title_sort calculation model for determination of impedance of power high voltage single core cables with polymer insulation
topic power cables
complex resistance
magnetically coupled circuits
system of linear algebraic equations
conductor
screen
coefficient of irregularity of current distribution
url http://eie.khpi.edu.ua/article/view/234481/233447
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AT gvbezprozvannych calculationmodelfordeterminationofimpedanceofpowerhighvoltagesinglecorecableswithpolymerinsulation
AT iakostiukov calculationmodelfordeterminationofimpedanceofpowerhighvoltagesinglecorecableswithpolymerinsulation