Induced Disturbance in Power Network by Lightning

In this work the transient analysis of a power network excited by indirect lightning is performed directly in time domain. Using the FDTD, we calculate induced currents and voltages in each node for a three-phase power network. The topological analysis of the network where each element (power line a...

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Main Authors: Senaa Kaouche, Bachir Nekhoul, Kamel Kerroum, Khalil El Khamlichi Drissi
Format: Article
Language:English
Published: Croatian Communications and Information Society (CCIS) 2007-03-01
Series:Journal of Communications Software and Systems
Subjects:
Online Access:https://jcomss.fesb.unist.hr/index.php/jcomss/article/view/269
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author Senaa Kaouche
Bachir Nekhoul
Kamel Kerroum
Khalil El Khamlichi Drissi
author_facet Senaa Kaouche
Bachir Nekhoul
Kamel Kerroum
Khalil El Khamlichi Drissi
author_sort Senaa Kaouche
collection DOAJ
description In this work the transient analysis of a power network excited by indirect lightning is performed directly in time domain. Using the FDTD, we calculate induced currents and voltages in each node for a three-phase power network. The topological analysis of the network where each element (power line and lumped charge) is considered, allows deducing the matrix equation. In this electrical network matrix, power lines are represented by line equations, junctions and extremities nodes by Kirchhoff laws. The electromagnetic field emitted by lightning is represented in the second member of this matrix equation. The frequency dependence of the line parameters istaken in account while using time domain convolution.
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spelling doaj.art-a5b84e838bf94cb6b280fbf753229cac2022-12-22T00:51:28ZengCroatian Communications and Information Society (CCIS)Journal of Communications Software and Systems1845-64211846-60792007-03-01315258Induced Disturbance in Power Network by LightningSenaa KaoucheBachir NekhoulKamel KerroumKhalil El Khamlichi DrissiIn this work the transient analysis of a power network excited by indirect lightning is performed directly in time domain. Using the FDTD, we calculate induced currents and voltages in each node for a three-phase power network. The topological analysis of the network where each element (power line and lumped charge) is considered, allows deducing the matrix equation. In this electrical network matrix, power lines are represented by line equations, junctions and extremities nodes by Kirchhoff laws. The electromagnetic field emitted by lightning is represented in the second member of this matrix equation. The frequency dependence of the line parameters istaken in account while using time domain convolution.https://jcomss.fesb.unist.hr/index.php/jcomss/article/view/269lightning strockdisturbancepower networkcoupling
spellingShingle Senaa Kaouche
Bachir Nekhoul
Kamel Kerroum
Khalil El Khamlichi Drissi
Induced Disturbance in Power Network by Lightning
Journal of Communications Software and Systems
lightning strock
disturbance
power network
coupling
title Induced Disturbance in Power Network by Lightning
title_full Induced Disturbance in Power Network by Lightning
title_fullStr Induced Disturbance in Power Network by Lightning
title_full_unstemmed Induced Disturbance in Power Network by Lightning
title_short Induced Disturbance in Power Network by Lightning
title_sort induced disturbance in power network by lightning
topic lightning strock
disturbance
power network
coupling
url https://jcomss.fesb.unist.hr/index.php/jcomss/article/view/269
work_keys_str_mv AT senaakaouche induceddisturbanceinpowernetworkbylightning
AT bachirnekhoul induceddisturbanceinpowernetworkbylightning
AT kamelkerroum induceddisturbanceinpowernetworkbylightning
AT khalilelkhamlichidrissi induceddisturbanceinpowernetworkbylightning