DocumentCode
2080440
Title
Comparison between the high frequency characteristics of transformer interleaved and ordinary disk windings
Author
Moreau, O. ; Guuinic, P. ; Dorr, R. ; Su, Q.
Author_Institution
Electr. de France, Clamart, France
Volume
3
fYear
2000
fDate
23-27 Jan 2000
Firstpage
2187
Abstract
Interleaved and ordinary disk windings are widely used in high voltage transformers. Due to the difference in their inter-turn connections, the behaviours of electromagnetic transients in these windings are very different, especially at high frequencies. Although several winding models have been developed in the world for the calculation of impulse voltage distributions along transformer windings, no work has been done to determine the detailed high frequency characteristics. The authors have examined an interleaved and an ordinary disk winding of the same size and structure using a new transformer model and software package developed by Electricite de France. It has been found that for the interleaved winding, there exists a certain frequency range in which the winding behaves as a capacitive ladder network. However, the ordinary disk winding does not show such a frequency range. This result agrees with the previous measurements on several 66 kV to 220 kV power transformers. Comparison has also been made for these two windings in their impulse and sinusoidal voltage distributions. From theoretical analysis, an explanation is given to the difference of high frequency characteristics between interleaved and ordinary disk windings
Keywords
ladder networks; power transformers; transformer windings; voltage distribution; 66 to 220 kV; Electricite de France; capacitive ladder network; electromagnetic transients; high frequency characteristics; high voltage transformers; impulse voltage distribution; impulse voltage distributions; inter-turn connections; sinusoidal voltage distribution; software package; transformer disk windings; transformer interleaved windings; transformer model; transformer windings; Circuits; Frequency; Lightning; Power system analysis computing; Power system modeling; Power system transients; Power transformer insulation; Surges; Voltage; Windings;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Engineering Society Winter Meeting, 2000. IEEE
Print_ISBN
0-7803-5935-6
Type
conf
DOI
10.1109/PESW.2000.847692
Filename
847692
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