DocumentCode :
1436
Title :
Condition assessment of cellulosic part in power transformer insulation using transfer function zero of modified debye model
Author :
Baral, A. ; Chakravorti, S.
Author_Institution :
Dept. of Electr. Eng., Jadavpur Univ. Kolkata, Kolkata, India
Volume :
21
Issue :
5
fYear :
2014
fDate :
Oct. 2014
Firstpage :
2028
Lastpage :
2036
Abstract :
Analysis of Polarization-Depolarization Current, recorded from high voltage oil-paper insulation using insulation model is common among researchers. It is reported that paper insulation of power transformers undergoes non-uniform aging. Unlike Conventional Debye Model (CDM), Modified Debye Model (MDM) is capable of modeling such non-uniform aging. However, factors like insulation geometry affect the values of the MDM branch parameters. Therefore, model parameterized using data obtained from one insulation system finds limited use in assessing the condition of a different transformer, even with similar loading history and power rating. The present paper shows that a performance parameter, which is less sensitive to insulation geometry, can be evaluated from Transfer Function, TFM(s) of MDM. The parameter is the zero Z1 of TFM(s) which is located farthest away from the origin in the Left Half Plane of s-plane. The capability of Z1 as an insulation condition sensitive parameter is first tested on laboratory samples and then on data recorded from several real life power transformers. Results obtained for these transformers show that there is a good correlation between magnitude of Z1 and paper moisture content obtained from Frequency Domain Spectroscopy (FDS) using IDAX 300.
Keywords :
moisture; paper; power transformer insulation; transfer functions; FDS; IDAX 300; MDM; frequency domain spectroscopy; high voltage oil-paper insulation; insulation condition sensitive parameter; insulation geometry; insulation model; left half plane; loading history; modified Debye model; nonuniform aging; paper moisture content; polarization-depolarization current; power rating; power transformers; s-plane; transfer function; Aging; Equations; Insulation; Mathematical model; Moisture; Power transformers; Transfer functions; Conventional Debye model; aging; modified Debye model; paper moisture content; power transformer; transfer function;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2014.004517
Filename :
6927330
Link To Document :
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