DocumentCode :
804858
Title :
Advanced suppression of stochastic pulse shaped partial discharge disturbances
Author :
Happe, Stephan ; Kranz, Hans-Gerd ; Krause, Wolfgang
Author_Institution :
Laboratorium fur Hochspannungstechnik, Bergische Univ., Wuppertal, Germany
Volume :
12
Issue :
2
fYear :
2005
fDate :
4/1/2005 12:00:00 AM
Firstpage :
265
Lastpage :
275
Abstract :
Digital partial discharge (PD) diagnosis and testing systems are state of the art for performing quality assurance or fault identification on high voltage apparatus as well as commissioning tests. However their on-site application is a rather difficult task as PD information is generally superimposed with electromagnetic disturbances. These disturbances affect negatively all known PD evaluation systems. Especially the detection and suppression of stochastically distributed pulse shaped disturbances is a major problem. To determine such disturbances fast machine intelligent recognition systems are being developed. Three different strategies based on digital signal processing are discussed in this paper, while focusing on time resolved neural signal recognition. The system investigated more closely is currently able to distinguish between PD pulses and disturbances with the disturbances values being ten times higher than the peak values of the PD pulses. Therefore a measuring system acquires the input data in the VHF range (20-100 MHz). The discrimination of the pulses is performed in real time in time domain using fast neural network hardware. With that signal recognition system a noise reassessed phase resolved pulse sequence (PRPS) data set in the CIGRE data format is generated that can be the input source of most PD evaluation software. Optionally a noise reassessed analogue data stream can be generated that is suitable for any conventional PD measuring system.
Keywords :
artificial intelligence; digital signal processing chips; electromagnetic interference; fault diagnosis; neural nets; partial discharge measurement; power apparatus; power engineering computing; quality assurance; stochastic processes; time-domain analysis; CIGRE data format; PD evaluation software; PD pulses; PRPS; TRPD; commissioning tests; digital partial discharge diagnosis; digital signal processing; disturbance suppression; electromagnetic disturbances; fast neural network hardware; fault identification; high voltage apparatus; machine intelligent recognition systems; neural signal recognition; noise reassessed analogue data stream; noise suppression strategies; partial discharge disturbances; phase resolved pulse sequence; pulse shaped stochastic disturbance; quality assurance; testing systems; time resolved PD measurement; time resolved neural signal recognition; ultra wide band digitizer; Fault diagnosis; Noise generators; Partial discharges; Performance evaluation; Pulse shaping methods; Quality assurance; Signal resolution; Stochastic processes; System testing; Voltage;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2005.1430396
Filename :
1430396
Link To Document :
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