Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient

In this article the summary of measurement and calculation values of low frequency electric field radiation around the high-voltage transmission lines and impact of the increased voltage values on the AC corona onset voltage gradient are presented. The measurements of the low frequency e...

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Main Authors: Čaršimamović Adnan S., Mujezinović Adnan Z., Bajramović Zijad F., Turković Irfan M., Košarac Milodrag P.
Format: Article
Language:English
Published: VINCA Institute of Nuclear Sciences 2018-01-01
Series:Nuclear Technology and Radiation Protection
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1451-3994/2018/1451-39941802201C.pdf
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author Čaršimamović Adnan S.
Mujezinović Adnan Z.
Bajramović Zijad F.
Turković Irfan M.
Košarac Milodrag P.
author_facet Čaršimamović Adnan S.
Mujezinović Adnan Z.
Bajramović Zijad F.
Turković Irfan M.
Košarac Milodrag P.
author_sort Čaršimamović Adnan S.
collection DOAJ
description In this article the summary of measurement and calculation values of low frequency electric field radiation around the high-voltage transmission lines and impact of the increased voltage values on the AC corona onset voltage gradient are presented. The measurements of the low frequency electric field radiation level were performed under the 400 kV transmission lines of horizontal configuration with standard and compact dimensions. In all cases analyzed in this article, the measurements are performed in the middle of the span, because at this point the conductors are closest to the ground. The analysis in this article has been initiated by the increased voltage values of long duration that have been registered in nodes of the 400 kV network in Bosnia and Herzegovina and the neighbouring countries during the last years. The calculation of the low frequency electric field radiation of the different configuration of the high-voltage transmission lines will be useful for determining the non-ionization radiation exposure levels of the general public in the future as well as to determine their impact on the AC corona onset voltage gradient.
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spelling doaj.art-0f67222a36cc496595f90ecf9d370ad12022-12-22T00:43:32ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39941452-81852018-01-0133220120710.2298/NTRP1802201C1451-39941802201CLow frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradientČaršimamović Adnan S.0Mujezinović Adnan Z.1Bajramović Zijad F.2Turković Irfan M.3Košarac Milodrag P.4Independent System Operator in Bosnia and Herzegovina, Sarajevo, Bosnia and HerzegovinaUniversity of Sarajevo, Faculty of Electrical Engineering, Sarajevo, Bosnia and HerzegovinaUniversity of Sarajevo, Faculty of Electrical Engineering, Sarajevo, Bosnia and HerzegovinaUniversity of Sarajevo, Faculty of Electrical Engineering, Sarajevo, Bosnia and HerzegovinaIndependent System Operator in Bosnia and Herzegovina, Sarajevo, Bosnia and HerzegovinaIn this article the summary of measurement and calculation values of low frequency electric field radiation around the high-voltage transmission lines and impact of the increased voltage values on the AC corona onset voltage gradient are presented. The measurements of the low frequency electric field radiation level were performed under the 400 kV transmission lines of horizontal configuration with standard and compact dimensions. In all cases analyzed in this article, the measurements are performed in the middle of the span, because at this point the conductors are closest to the ground. The analysis in this article has been initiated by the increased voltage values of long duration that have been registered in nodes of the 400 kV network in Bosnia and Herzegovina and the neighbouring countries during the last years. The calculation of the low frequency electric field radiation of the different configuration of the high-voltage transmission lines will be useful for determining the non-ionization radiation exposure levels of the general public in the future as well as to determine their impact on the AC corona onset voltage gradient.http://www.doiserbia.nb.rs/img/doi/1451-3994/2018/1451-39941802201C.pdfnon-ionization radiationlow frequency electric fieldhigh voltage transmission lineAC coronacorona onset voltage gradient
spellingShingle Čaršimamović Adnan S.
Mujezinović Adnan Z.
Bajramović Zijad F.
Turković Irfan M.
Košarac Milodrag P.
Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
Nuclear Technology and Radiation Protection
non-ionization radiation
low frequency electric field
high voltage transmission line
AC corona
corona onset voltage gradient
title Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
title_full Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
title_fullStr Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
title_full_unstemmed Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
title_short Low frequency electric field radiation level around high-voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
title_sort low frequency electric field radiation level around high voltage transmission lines and impact of increased voltage values on the corona onset voltage gradient
topic non-ionization radiation
low frequency electric field
high voltage transmission line
AC corona
corona onset voltage gradient
url http://www.doiserbia.nb.rs/img/doi/1451-3994/2018/1451-39941802201C.pdf
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