Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components

In this paper by transient behavior modeling of all components in the distribution network, the overvoltages caused by direct and indirect of lightning strokes has been predicted. The influence of different parameters have been studied such as lightning current maximum, grounding system with conside...

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Main Authors: faridodoin safaei, nabiollah ramezani, milad niazazari
Format: Article
Language:fas
Published: Semnan University 2018-06-01
Series:مجله مدل سازی در مهندسی
Subjects:
Online Access:https://modelling.semnan.ac.ir/article_3053_f906f8dc513365b7dd4e7d5c5edca49d.pdf
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author faridodoin safaei
nabiollah ramezani
milad niazazari
author_facet faridodoin safaei
nabiollah ramezani
milad niazazari
author_sort faridodoin safaei
collection DOAJ
description In this paper by transient behavior modeling of all components in the distribution network, the overvoltages caused by direct and indirect of lightning strokes has been predicted. The influence of different parameters have been studied such as lightning current maximum, grounding system with considering its high frequency models and nonlinear phenomenon of soil ionization, the different load models and soil resistivity. Also the effects of different conditions have been evaluated such as the adjacent buildings in urban distribution lines and its role to remove some of surge arresters, use of shielding wire in some areas with high density of lightning, use of cables at the junction of overhead line transformer to reduce the over-voltages. An appropriate algorithm is proposed by considering the parameters affecting lightning overvoltages to evaluate the effects of these overvoltages on the distribution network. The results of this study can be used in choose of the appropriate insulation level for distribution network equipment, economic evaluation in network design and removal and addition of surge arresters.
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spelling doaj.art-2e28855b9a3649efa708c6dbfa95e6752024-02-23T19:05:22ZfasSemnan Universityمجله مدل سازی در مهندسی2008-48542783-25382018-06-01165324325810.22075/jme.2017.6135.3053Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Componentsfaridodoin safaei0nabiollah ramezani1milad niazazari2دانشگاه علم و فناوری مازندرانElectrical and Computer Department, Electrical engineering group- University of Science and Technology of Mazandaranدانشگاه علم و فناوری مازندرانIn this paper by transient behavior modeling of all components in the distribution network, the overvoltages caused by direct and indirect of lightning strokes has been predicted. The influence of different parameters have been studied such as lightning current maximum, grounding system with considering its high frequency models and nonlinear phenomenon of soil ionization, the different load models and soil resistivity. Also the effects of different conditions have been evaluated such as the adjacent buildings in urban distribution lines and its role to remove some of surge arresters, use of shielding wire in some areas with high density of lightning, use of cables at the junction of overhead line transformer to reduce the over-voltages. An appropriate algorithm is proposed by considering the parameters affecting lightning overvoltages to evaluate the effects of these overvoltages on the distribution network. The results of this study can be used in choose of the appropriate insulation level for distribution network equipment, economic evaluation in network design and removal and addition of surge arresters.https://modelling.semnan.ac.ir/article_3053_f906f8dc513365b7dd4e7d5c5edca49d.pdfdistribution networkdirect and indirect of lightninghigh frequency modelstransient over-voltage
spellingShingle faridodoin safaei
nabiollah ramezani
milad niazazari
Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components
مجله مدل سازی در مهندسی
distribution network
direct and indirect of lightning
high frequency models
transient over-voltage
title Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components
title_full Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components
title_fullStr Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components
title_full_unstemmed Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components
title_short Evaluation and Prediction of Over-Voltages Effects Caused by Direct/Indirect Lightning Stroke on Complex Power Distribution Networks Using High Frequency Modeling of the Components
title_sort evaluation and prediction of over voltages effects caused by direct indirect lightning stroke on complex power distribution networks using high frequency modeling of the components
topic distribution network
direct and indirect of lightning
high frequency models
transient over-voltage
url https://modelling.semnan.ac.ir/article_3053_f906f8dc513365b7dd4e7d5c5edca49d.pdf
work_keys_str_mv AT faridodoinsafaei evaluationandpredictionofovervoltageseffectscausedbydirectindirectlightningstrokeoncomplexpowerdistributionnetworksusinghighfrequencymodelingofthecomponents
AT nabiollahramezani evaluationandpredictionofovervoltageseffectscausedbydirectindirectlightningstrokeoncomplexpowerdistributionnetworksusinghighfrequencymodelingofthecomponents
AT miladniazazari evaluationandpredictionofovervoltageseffectscausedbydirectindirectlightningstrokeoncomplexpowerdistributionnetworksusinghighfrequencymodelingofthecomponents