DocumentCode :
3559182
Title :
Partial discharge diagnosis method using electromagnetic wave mode transformation in actual GIS structure
Author :
Kaneko, Shuhei ; Okabe, Shigemitsu ; Yoshimura, Manabu ; Muto, Hirotaka ; Nishida, Chieko ; Kamei, Mitsuhito
Author_Institution :
Tokyo Electr. Power Co., Yokohama
Volume :
15
Issue :
5
fYear :
2008
fDate :
10/1/2008 12:00:00 AM
Firstpage :
1329
Lastpage :
1339
Abstract :
The diagnosis algorithm using ultra high frequency (UHF) method with the higher-order electromagnetic wave (EM-wave) was examined as the advanced partial discharge (PD) diagnosis method in a gas insulated switchgear (GIS) in the former paper. Previous studies evaluated the characteristics of EM-waves propagated in a simple coaxial cylindrical pipe, or through an L-shaped or a T-shaped pipe formed by combining these. In the present study, components (a hand hole, a post-type spacer, etc.) present in an actual GIS structure were identified, and an evaluation done mainly through an analysis on what effects their presence has on the mode transformation of EM-waves propagated inside a GIS tank. The direction in which a GIS tank is bent is horizontal (0deg) in the L-shape structure. If there is either a post-type spacer or a shield ring inside, and the signal source is in the 0deg direction, the distribution of the EM-wave strength varied according to through the L-shape structure. Also in the case of a T-shaped structure, the distribution of the output after signals are transmitted through the T-shaped junction varied depending on each component. Based on these characteristics, the diagnosis algorithm for PD with higher-order mode EM-waves was improved taking into account the effects of various components existing in an actual GIS, and a PD diagnosis method more suitable for an actual structure was established.
Keywords :
UHF measurement; electromagnetic wave propagation; gas insulated switchgear; insulation testing; partial discharge measurement; EM-wave propagation; GIS tank; L-shaped pipe structure; T-shaped pipe structure; coaxial cylindrical pipe; electromagnetic wave mode transformation; gas insulated switchgear; partial discharge diagnosis method; post-type spacer; shield ring; signal source; ultra high-frequency method; Coaxial components; Cutoff frequency; Electromagnetic propagation; Electromagnetic scattering; Gas insulation; Geographic Information Systems; Maxwell equations; Partial discharges; Shape; Switchgear; Partial discharge (PD); UHF; actual GIS structure; diagnosis; electromagnetic wave (EMwave); higher-order mode;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
Conference_Location :
10/1/2008 12:00:00 AM
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2008.4656241
Filename :
4656241
Link To Document :
بازگشت