Title :
High-impedance fault detection in distribution networks with use of wavelet-based algorithm
Author :
Michalik, Marek ; Rebizant, Waldemar ; Lukowicz, Miroslaw ; Lee, Seung-Jae ; Kang, Sang-Hee
Author_Institution :
Fac. of Electr. Eng., Tech. Univ. Wroclaw
Abstract :
A new simple and effective algorithm of arcing fault detection in distribution networks with the application of a wavelet transform technique is presented in this paper. The protection algorithm developed observes the phase displacement between wavelet coefficients calculated for zero-sequence voltage and current signals at a chosen high-level frequency. The final decision in regards to feeder switching off (or alarm issuing) is met either with a deterministic logic scheme or with the use of a neural net trained especially for that purpose. The developed wavelet-based high-impedance fault (HIF) detector has been tested with Electromagnetic Transients Program-Alternative Transients Program (ATP)-generated signals, exhibiting better performance than traditionally used algorithms and methods. The protection method proposed may be used for HIF detection independent of the network neutral-point grounding mode. The scheme proved to be robust against transients generated during normal events such as feeder energizing and de-energizing as well as capacitor bank switching
Keywords :
EMTP; fault location; neural nets; power distribution faults; power distribution protection; wavelet transforms; alternative transients program; arcing fault detection; capacitor bank switching; distribution networks; electromagnetic transients program; feeder switching; high-impedance fault detection; network neutral-point grounding; neural net; wavelet transform technique; wavelet-based algorithm; zero-sequence voltage; Detectors; Electromagnetic transients; Fault detection; Frequency; Logic; Neural networks; Protection; Voltage; Wavelet coefficients; Wavelet transforms; High-impedance faults (HIFs); medium-voltage (MV) networks; protective relaying; transient analysis; wavelet transformation;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2006.874581