DocumentCode
1849431
Title
Partial discharge current pulse waveform analysis (CPWA) for electrical insulation diagnosis of solid insulators in GIS
Author
Matsushita, A. ; Kato, K. ; Hayakawa, N. ; Kawakita, K. ; Okubo, H.
Author_Institution
Nagoya Univ., Japan
fYear
2001
fDate
2001
Firstpage
348
Lastpage
351
Abstract
We developed a novel approach based on PD current pulse waveform analysis (CPWA) in order to estimate insulation degradation of solid insulators with different kind of defects. In the CPWA method we focused on the time transition of PD waveform parameters such as rise-time, fall-time, di/dt and peak value in a single PD current pulse waveform. PD current pulse waveform may include information on physical phenomena from PD inception to BD. We fabricated epoxy spacer models with delamination as an insulation defect. The time transition of PD waveform parameters described above was measured and analyzed under a long-term AC voltage application. Using CPWA method together with statistical PD parameters such as PD charge, PD generation phase and frequency, we discussed the mechanism of insulation degradation process of the epoxy spacer for GIS from PD inception to BD
Keywords
delamination; epoxy insulation; gas insulated switchgear; partial discharges; CPWA method; GIS; PD generation phase; Pl) waveform parameters; defects; delamination; electrical insulation diagnosis; epoxy spacer models; fall-time; frequency; gas insulated switchgears; insulation degradation; long-term AC voltage application; partial discharge current pulse waveform analysis; peak value; physical phenomena; rise-time; single PD current pulse waveform; solid insulators; time transition; Current measurement; Delamination; Dielectrics and electrical insulation; Electrical resistance measurement; Geographic Information Systems; Oscilloscopes; Partial discharges; Pulse measurements; Solids; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Insulation and Dielectric Phenomena, 2001 Annual Report. Conference on
Conference_Location
Kitchener, Ont.
Print_ISBN
0-7803-7053-8
Type
conf
DOI
10.1109/CEIDP.2001.963554
Filename
963554
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