DocumentCode
3569791
Title
Electromagnetic analysis ´ Application to lightning surge phenomena on power lines
Author
Mariut, Larisa ; Helerea, Elena
Author_Institution
Electr. Eng. & Appl. Phys. Dept., Transilvania Univ. of Brasov, Brasov, Romania
fYear
2014
Firstpage
1
Lastpage
6
Abstract
The modeling and computation of electromagnetic phenomena like lightning surge, switching and transient overvoltage still remain a difficult task within power systems both for design and exploitation purposes. Nowadays, the measures for overhead line protection are reconsidered having in view the electronic equipment sensitivity and the requirements of many consumers regarding the increase of power quality. This paper deals with the analysis of the effects of a direct lighting surge on a three phase high voltage overhead power line. A model of a 110 kV power line with single tower is developed. The model was applied within an electromagnetic analysis considering the effect of a direct surge on the power line during different line protections: with and without surge arrester. The analysis was performed within time domain simulations, both continuous and discretize electrical methods are applied using the Matlab-Simulink software tools. The results are useful for protection design of overhead power lines, sensitive to direct transient phenomena.
Keywords
arresters; computational electromagnetics; lightning protection; poles and towers; power supply quality; power system transients; power transmission lines; power transmission protection; Matlab-Simulink software tools; direct transient phenomena; electromagnetic analysis; electromagnetic phenomena; electronic equipment sensitivity; lightning surge phenomena; overhead line protection; power lines; power quality; power systems; surge arrester; three phase high voltage overhead power line; transient overvoltage; voltage 110 kV; Analytical models; Integrated circuit modeling; Lightning; Mathematical model; Surge protection; Surges; Transient analysis; Lightning surge; electromagnetic analysis; modeling; overhead lines; simulations;
fLanguage
English
Publisher
ieee
Conference_Titel
Fundamentals of Electrical Engineering (ISFEE), 2014 International Symposium on
Print_ISBN
978-1-4799-6820-6
Type
conf
DOI
10.1109/ISFEE.2014.7050569
Filename
7050569
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