Title :
Development and Hardware Implementation of a Fault Transients Recognition System
Author :
Perera, Nuwan ; Rajapakse, Athula D.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Manitoba, Winnipeg, MB, Canada
Abstract :
This paper presents the development and hardware implementation of a classification scheme to distinguish the transients originated by faults from other types of transients. In the proposed scheme, a set of Hidden Markov Model-based classifiers is employed to recognize the fault transients. Input features for the classifiers are the energy contained in wavelet coefficients of the measured current waveforms. A laboratory prototype of the fault recognition system was implemented on a floating-point digital-signal-processor (DSP)-based hardware platform. The classification system was tested using the transient signals generated by a real-time waveform playback unit. The test waveforms were generated by simulating an actual extra-high-voltage transmission system on an electromagnetic transient simulation program. The operation of the classification system was further verified using waveforms obtained from an actual fault recorder. The performance of the classifier was investigated under different practical scenarios, such as current transformer saturation, measurement noise, and lightning faults.
Keywords :
EMTP; hidden Markov models; pattern classification; power transmission faults; signal classification; Electromagnetic Transient Simulation Program; actual fault recorder; current transformer saturation; current waveforms; extra-high-voltage transmission system; fault transient recognition system; floating-point DSP-based hardware platform; floating-point digital-signal-processor-based hardware platform; hardware implementation; hidden Markov model-based classifiers; lightning faults; measurement noise; real-time waveform playback unit; transient signals; wavelet coefficients; Discrete wavelet transforms; Hardware; Hidden Markov models; Real time systems; Transient analysis; Discrete wavelet transform (DWT); hidden Marko Model (HMM); protection relaying; real-time implementation; transient classifier;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2011.2174163