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Application of the Short Time Fourier Transform in Evaluation of the Acoustic Emission Signals Generated by Partial Discharges

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The subject matter presented in this paper deals with application of the short time Fourier transform (STFT) in processing the acoustic emission (AE) pulses generated by six basic forms of partial discharges (PDs) that can occur in insulation systems of power appliances. The paper presents the time-frequency analysis results of the AE pulses generated by the following spark gaps modeling the following PD forms: point-plane type discharges in oil, multipoint-plane type discharges in oil, multipoint-plane with a layer of pressboard, surface discharges in oil, gas bubble discharges in oil, discharges in indeterminate-potential particles moving in oil. For each of the PD forms the STFT was determined and the corresponding spectrogram and three-dimensional spectrogram of amplitude or power spectrum were drawn.
Słowa kluczowe
Rocznik
Tom
Strony
45--67
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
  • Technical University of Opole, Department of Electrical Engineering and Automatic Control ul. K. Sosnkowskiego 31, 45-272 , Opole, Poland
autor
  • Technical University of Opole, Department of Electrical Engineering and Automatic Control ul. K. Sosnkowskiego 31, 45-272 , Opole, Poland
  • Technical University of Opole, Department of Electrical Engineering and Automatic Control ul. K. Sosnkowskiego 31, 45-272 , Opole, Poland
Bibliografia
  • [1] T. Bengtsson, M. Leijon, L. Ming, B. JSnsson, “Directivity of acoustic signals from PD in oil”, IEE proceedings, Vol. 142, No. 1, pp.1-9,1995.
  • [2] T. Bengtsson, M. Leijon, L. Ming, B. Jonsson, “Transformer PD diagnosis using AE technique”, 10th International Symposium on High Voltage Engineering, Montreal, Quebec, Canada, pp. 73-79,1997.
  • [3] M. Beyer, H. Borsi, M. Hartje, “Some aspect about possibilities and limitation of acoustic PD measurements in insulating fluids”, 5th International Symposium on High Voltage Engineering, Braunschweig, Germany, pp. 1-4,1987.
  • [4] A. M. Bianchi, L.T Mainardi., S. Cerutti, “Time-Frequency analysis of biomedical signals”, Transactions of the Institute of Measurements and Control, No. 22, Vol. 3, pp. 215- 230,2002.  Boczor I, Zmarzfy D.
  • [5] Boczar T., “Application Possibilities of the Statistical Analysis and Digital Processing Methods in the Characteristics of the Acoustic Emission Signals Generated by Partial Discharges”, The Molecular and Quantum Acoustics Journal, Gliwice, Vol. 23, 2002, pp. 63- 83.
  • [6] T. Boczar, “Identification of fundamental forms of partial discharges based of the results of frequency analysis of their acoustic emission”, Journal of Acoustic Emission Vol. 17, No. 3-4, Los Angeles USA, pp. S7-S12, 1999.
  • [7] T. Boczar, “Identification of a Specific Type of Partial Discharges form Acoustic Emission Frequency Spectra”, IEEE Transactions on Dielectrics and Electrical Insulation, Vol. 8, No 4, pp. 598-606, 2001.
  • [8] T. Boczar, S Wolny, “Application of Statistical Analysis in Result Repeatability Evaluation of Acoustic Emission Measurements Generated by Partial Discharges”, Archives of Acoustics, Vol. 26, No. 3, IPPT-PAN, Warszawa, pp. 161-179.
  • [9] E. Carminati, C. Loredana, L. Massimo, M. Antonello, “A Neuro-Fuzzy Approach for the Detection of Partial Discharge”, IEEE Transaction on Instrumentation & Measurements, Vol.50, No. 5, p. 1413-1418, 2000.
  • [10] L. Cohen, “Time-frequency analysis”, Prentice Hail, Englewood Cliffs, New Jersey, 1995.
  • [11] Z. Deheng, T. Kexiong, J. Xianche, “The study of AE method for detection of PD in power transformers”, II Conf. Properties and App, of Diel. Mat., vol. 2, Pekin, Chiny, pp. 614-617,1988.
  • [12] E. Grossman, K. Feser, “Online Pd-Monitoring on Transformers Using Acoustic: Emission Techniques”, International Conference APTADM’2001, Wroclaw, Poland, pp. 264-268,2001,
  • [13] A, Kelen, “Trends in PD diagnostics. When new options proliferate, so do old and new problems”, IEEE Trans, Electrical Insulation, Vol. 2, No. 4, pp. 529-534, 1995.
  • [14] J. L. Kirtley, J. C. Lavalle, D. J. McCarthy, “Acoustic monitoring of transformer structures”, CIGRE Symposium, Raport No. 3- 05.87, Vienna, pp. 1-5, 1987.
  • [15 ] F. H. Kreuger, E. Gulski, A. Krivda, “Classification of PD”, IEEE-E1, Vol. 28, No. 6, 1993, pp, 917-931.
  • [16] S. Rengarajan, A. Bhoomaiah, K. Krishna Kishore, “Acoustic PD measurements for transformer insulation-an experimental validation”, International Symposium on High- Voltage Engineering, IEE proceedings, pp. 1-8, 1999. 
  • [17] S. Rengarajan, B. P. Singh, S. C. Gupta, D. K. Narayanan, “Transients in high voltage transmission lines due to fault and their effect on power transformer”, Cigre Regional Meeting for The African Continent, pp. 1-6,1997.
  • [18] J. Skubis, „EA w badaniach izolacji urządzeń elektroenergetycznych”, IPPT-PAN, Warszawa, 1998.
  • [19] Shie Qian, Dapang Chen, “Joint time-frequency analysis. Methods and applications”, Prentice Hall, Upper Saddle River, 1996.
  • [20] R. Włodek, P. Zydroń, „Application of signal processing elements to partial discharges detection, mesurements and analysis”, Conference Processing 10łh ISH, Montreal, Canada, Cd file 3437, 1997
  • [21] R. Włodek, P. Zydroń, „Elements of signal theory in detection of partial discharges for diagnostics aims”, 8th Workshop on High Voltage Engineering, The Institute of power Transmission and High Voltage Technique, University of Stuttgart, Hirschegg, 1996.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUJ6-0007-0103
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