DocumentCode
53099
Title
Modeling of AC flashover on ice-covered composite insulators with different shed configurations
Author
Lichun Shu ; Shijing Wang ; Xingliang Jiang ; Qin Hu ; Jian Liang ; Pancheng Yin ; Ji Chen
Author_Institution
State Key Lab. of Power Transm. Equip. & Syst. Security & New Technol., Chongqing Univ., Chongqing, China
Volume
21
Issue
6
fYear
2014
fDate
Dec-14
Firstpage
2642
Lastpage
2651
Abstract
The shed configuration has an obvious effect on flashover performance of ice-covered composite insulators. Based on the flashover arc path, a “multi-arc, multi-ice-layer” mathematical model is proposed to predict AC flashover voltages of ice-covered composite insulators with different shed configurations during the melting period. The model takes into account two different arc paths across the tip of each un-bridge icicle. Moreover, the arc across the air gap is distinguished from the arc on the ice surface, and the residual ice layer resistance is divided into icicle resistance, arc root resistance and shed surface ice resistance. In order to verify this model, four kinds of 220 kV composite insulators with different shed configurations are tested under different icing conditions. The theoretical results from the model are found to be in good agreement with the experimental results.
Keywords
air gaps; arcs (electric); composite insulators; flashover; ice; AC flashover modeling; AC flashover voltage prediction; air gap; arc root resistance; flashover arc path; ice-covered composite insulators; icicle resistance; melting period; multiarc mathematical model; multiice-layer mathematical model; residual ice layer resistance; shed configurations; shed surface ice resistance; voltage 220 kV; Atmospheric modeling; Flashover; Ice surface; Insulators; Mathematical model; Resistance; AC flashover; Shed configuration; arc path; composite insulator; icicle; predictive model.;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/TDEI.2014.004685
Filename
7031515
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