DocumentCode
1276749
Title
Decision trees and wavelet analysis for power transformer protection
Author
Sheng, Yong ; Rovnyak, Steven M.
Author_Institution
Dept. of Electr. Eng., Louisiana Tech. Univ., Ruston, LA, USA
Volume
17
Issue
2
fYear
2002
fDate
4/1/2002 12:00:00 AM
Firstpage
429
Lastpage
433
Abstract
This paper proposes decision trees (DTs) and wavelet analysis for the protection of large transformers. The DTs assimilate a large number of measured and derived quantities such as wavelet decomposition and harmonic coefficients. Wavelet decomposition is performed on 32 samples from a one-cycle window. The DT input vector contains eight wavelet coefficients from one level of resolution and other variables such as RMS differential current, RMS restraining current, percent differential current, and second and fifth harmonics. The eight detail coefficients are sorted so that the DT input vector remains relatively constant for a quasiperiodic signal as the observation window moves along the time axis. DTs are trained on data extracted from a large number of simulations. Accuracies around 95% are obtained in the presence of CT saturation when using either wavelets or harmonics in addition to the differential and restraining currents
Keywords
EMTP; decision trees; digital simulation; pattern recognition; power engineering computing; power transformer protection; relay protection; wavelet transforms; 230 kV; 34.5 kV; RMS differential current; RMS restraining current; decision tree input vector; decision trees; fifth harmonics; harmonic coefficients; observation window; one-cycle window; pattern recognition; percent differential current; power transformer protection; protective relaying; quasiperiodic signal; second harmonics; three-phase EMTP simulations; wavelet analysis; wavelet coefficients; wavelet decomposition; Circuit faults; Decision trees; Fault currents; Pattern recognition; Power system harmonics; Power system protection; Power transformers; Protective relaying; Surges; Wavelet analysis;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.997912
Filename
997912
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