DocumentCode :
2132441
Title :
A fuzzy ARTMAP based high impedance arc fault detection scheme
Author :
Saleem, Syed Muhammad Atif ; Sharaf, Adel M.
Author_Institution :
Dept. of Electr. & Comp. Eng., Univ. of New Brunswick, Fredericton, NB
fYear :
2008
fDate :
4-7 May 2008
Abstract :
This paper presents the application of fuzzy ARTMAP to investigate a long outstanding problem of arc type fault detection in electric systems, distribution systems, process industries and mining. With the recent increase in the use of nonlinear type loads, power semiconductor converters and possible harmonic series and parallel resonance conditions in power system and the consequent increase in the total harmonic distortion (THD), it is very difficult to use a simple relay based only a single harmonic component for HIF arc fault detection. In this paper, a collection of dominant key harmonic signals forms the basis for a dasiafeaturepsila or dasiadiagnosticpsila vector instead of a single dominant harmonic signal. Fast Fourier transform (FFT) is used to transform the HIF arc faults from the time domain to the frequency domain. A novel Feature Vector comprising the 3rd and 5th harmonics of the voltage, current and power signals is developed.
Keywords :
arcs (electric); fast Fourier transforms; fault diagnosis; frequency-domain analysis; fuzzy set theory; harmonic distortion; power system faults; power system harmonics; time-domain analysis; FFT; THD; distribution systems; dominant harmonic signal; electric systems; fast Fourier transform; frequency domain analysis; fuzzy ARTMAP; high impedance arc fault detection scheme; nonlinear type loads; parallel resonance conditions; power semiconductor converters; power system harmonic series; time domain analysis; total harmonic distortion; Electrical fault detection; Fast Fourier transforms; Fault detection; Fuzzy systems; Impedance; Mining industry; Power system faults; Power system harmonics; Power system relaying; Resonance; Fuzzy ARTMAP; High Impedance Faults; Power System Protection;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical and Computer Engineering, 2008. CCECE 2008. Canadian Conference on
Conference_Location :
Niagara Falls, ON
ISSN :
0840-7789
Print_ISBN :
978-1-4244-1642-4
Electronic_ISBN :
0840-7789
Type :
conf
DOI :
10.1109/CCECE.2008.4564660
Filename :
4564660
Link To Document :
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