Title :
On-line recognition and retrieval of PD signal by regularity measurement based on computation of Lipschitz exponents in wavelet domain
Author :
Shetty, Pradeep Kumar ; Ramu, T.S.
Author_Institution :
Dept. of High Voltage Eng., Indian Inst. of Sci., Bangalore, India
Abstract :
The problem of on-line recognition and retrieval of relatively weak industrial signals such as partial discharges (PD), buried in excessive noise, has been addressed in this paper. The major bottleneck being the recognition and suppression of stochastic pulsive interference (PI), due to the overlapping broad band frequency spectrum of PI and PD pulses. Therefore, on-line, on-site PD measurement is hardly possible in conventional frequency based DSP techniques. In the authors methodology, the observed noisy signal is enhanced and non-pulsive noises are removed by implementing a wavelet based soft-thresholding scheme. Then, the pulses are detected using a simple peak-detector and further analysis is done on localized pulses by taking an appropriate window at the detected location. The features of the PD and PI pulses are obtained by measuring the regularity of the pulses at the detected location, which is accomplished by estimating Lipschitz exponents (LE). In this regard, a wavelet based methodology has been used in estimating LE, which is then used as an index for classifying the pulses into PD and PI. The proposed method was found to be effective in automatic retrieval of PD pulses.
Keywords :
impulse noise; interference suppression; partial discharge measurement; peak detectors; signal classification; signal denoising; wavelet transforms; Lipschitz exponents; PD signal retrieval; insulation failure; interference suppression; nonpulsive noise removal; on-line PD signal recognition; partial discharges; peak-detector; pulse classification; pulse detection; pulse regularity measurement; soft-thresholding scheme; stochastic pulsive interference; wavelet transform; Adaptive filters; Frequency; IIR filters; Interference; Noise measurement; Noise shaping; Partial discharges; Pulse shaping methods; Stochastic resonance; Wavelet domain;
Conference_Titel :
Electrical Insulation and Dielectric Phenomena, 2004. CEIDP '04. 2004 Annual Report Conference on
Print_ISBN :
0-7803-8584-5
DOI :
10.1109/CEIDP.2004.1364278