DocumentCode
2357018
Title
Investigation of simple graded permittivity solid spacer shape by electrode modification on gas insulated switchgear
Author
Ju, Heung-Jin ; Kim, Bong-Seong ; Hwang, Hui-Dong ; Jo, Soon-Kook ; Ko, Kwang-Cheol
Author_Institution
Dept. of Electr. Eng., Hanyang Univ., Seoul, South Korea
fYear
2010
fDate
23-27 May 2010
Firstpage
434
Lastpage
438
Abstract
It was investigated and proved that the Functionally Graded Material (FGM) as an insulation material for high voltage applications are able to relax the electric Held concentration around the high voltage electrode and along the gas-insulator surface. Based on the previous numerical analysis, it was proved that the FGM spacer, which permittivity has gradually changed, with the modification of a spacer configuration by the Design of Experiment (DOE) showed considerable maximum electric field reduction in comparison with a conventional spacer which has uniform permittivity. However, it is hard to apply a gradual permittivity variation in the FGM spacer for a real product processing due to its complicated shape. Thus, through this paper, it is proceeded to change the electrode shape in the gas insulated switchgear in order to increase the possibility of real FGM insulator manufacturing. To achieve the goal, the optimization processes are used to modify the both shape of electrode and FGM spacer on a commercial gas insulated switchgear configuration. Consequently, the insulation capability of the switchgear with the optimally designed FGM spacer can be efficiently improved.
Keywords
design of experiments; electric fields; functionally graded materials; gas insulated switchgear; permittivity; DOE; FGM insulator manufacturing; design of experiment; electric field concentration; electrode modification; functionally graded material; gas insulated switchgear; gas-insulator surface; maximum electric field reduction; simple graded permittivity solid spacer shape; Cathodes; Electric fields; Insulation; Materials; Permittivity; Shape; FGM spacer; Functionally Graded Material; electric field; gas insulated switchgear; optimization process;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Modulator and High Voltage Conference (IPMHVC), 2010 IEEE International
Conference_Location
Atlanta, GA
Print_ISBN
978-1-4244-7131-7
Type
conf
DOI
10.1109/IPMHVC.2010.5958387
Filename
5958387
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