DocumentCode
12942
Title
Electrical aging lifetime model of oil-impregnated paper under pulsating DC voltage influenced by temperature
Author
Jian Li ; Zhiman He ; Grzybowski, S.
Author_Institution
State Key Lab. of Power Equip. & Syst. Security & New Technol., Chongqing Univ., Chongqing, China
Volume
20
Issue
6
fYear
2013
fDate
Dec-13
Firstpage
1992
Lastpage
1997
Abstract
Main insulation of windings connected with valves in high voltage direct current (HVDC) convert transformers withstands pulsating DC voltages. This paper presents breakdown properties of oil-impregnated paper under pulsating DC voltages at different temperatures. Progressive stress tests were carried out to obtain breakdown voltages of oil-impregnated paper with thickness of 0.2 mm under pulsating DC voltages at different temperatures. Constant stress tests were executed to measure time to breakdown of the oil-paper specimens. Both types of the experiments were also undertaken under either AC or DC voltages. An electrical aging lifetime model was proposed for the oil-impregnated paper, and parameters of the electrical aging lifetime model were presented. Experiments and analysis results show that the breakdown voltages and time to breakdown of oil-paper insulation are influenced by temperature significantly.
Keywords
HVDC power convertors; ageing; electric breakdown; impregnated insulation; paper; power transformer insulation; stress analysis; time measurement; transformer oil; transformer windings; HVDC converter transformer; breakdown property; electrical aging lifetime model; high voltage direct current converter transformer; oil-impregnated paper; oil-paper insulation breakdown; progressive stress testing; pulsating DC voltage; size 0.2 mm; time measurement; valve; windings insulation; Aging; Breakdown voltage; Electric breakdown; Insulation; Stress; Temperature measurement; Voltage measurement; Oil-impregnated paper; converter transformer; electrical aging; life model; pulsating DC voltage;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/TDEI.2013.6678846
Filename
6678846
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