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Development of Insulation Degradation Diagnosis System for Electrical Plant

  • Kim, Yi-Gon (Dept. of Electrical and Semiconductor Engineering, Yosu National University)
  • Published : 2002.03.01

Abstract

Insulation aging diagnosis system provides early warning regarding electrical equipment defects. Early warning is very important in that it can avoid great losses resulting from unexpected shutdown of the production line. Since relations of insulation aging and partial discharge dynamics are non-linear. it is very difficult to provide early warning in an electrical equipment. In this paper, we propose the design method of insulation aging diagnosis system that use a electromagnetic wave and acoustic signal to diagnose an electrical equipment. Proposed system measures the partial discharge on-line from DAS(Data Acquisition System and acquires 2D patterns from analyzing it. For filtering the noise contained in sensor signals we used ICA algorithms. Using this data, we design of the neuro-fuzzy model that diagnoses an electrical equipment and is investigated in this paper. Validity of the new method is asserted by numerical simulation.

Keywords

References

  1. Q. Su, G.H. Vaillancourt, 'Computer-Based Multi-Terminal Partial Discharge Measurements of Transformers', Conf. Record of The '96 IEEE intern. Sym. on Elect. Insul., pp. 61-64, Montreal, Quebec, Canada, June 16-19, 1996 https://doi.org/10.1109/ELINSL.1996.549283
  2. D.H. Shroff and A.W. Stannett, 'A Revew of Paper ageingin Power Transformer.' IEE Proc. 132 pp. 312-319, 1985 https://doi.org/10.1049/ip-c:19850052
  3. Bernhard A. Fruth, Detlev W. Gross, 'Partial Discharge Signal Conditioning Techniques for On-Line Noise Rejection and Improvement of Calibration.' Conference Record of the 1996 IEEE International Symposium on Electrical Insulation, pp. 397-400, Montreal, Quebec, Canada, June 16-19, 1996
  4. T. Hoshino, M. Okubo, 'Consideration of Radiation electro-magnatic Wave from Partial Discharge Based on Half-Wave Dipole Antenna Model.' T.Iee Japan, vol. 117- B, no. 8, pp. 1152-1157, 1997
  5. Peter M. Eleftherion, 'Partial Discharge XXI: Acoustic Emission-Based PD Source Location In .'IEE Electrical Insulation Magazine pp. 22-26, 1995
  6. I.E Lundgaard, 'Partial Discharge - Part XIV: AcousticPartial Discharge Detection - Practical Application.' IEEEE tectrical Insulation Magazine, 8, September/October 1992. p.34 https://doi.org/10.1109/57.156943
  7. H. Muto, M. Doi, H. Fujii, M. Kamei, 'Resonance Characteristics and Identification of Models of Electromagnatic Waves Exited by Partial Discharges in GIS', Trans. of IEE japan, vol. 118-B, no. 12, pp. 1408-1414, 1998
  8. E. Howell, E. T. Norton 'Detection of Partial Dischargein Transformers using Acoustic Emission Techniques' IEEE Trans. on PAS, vol. PAS-97, no. 5, PP. 1538-1549, 1968 https://doi.org/10.1109/TPAS.1978.354646
  9. P. Osmokrovic, 'Mechanism of Electrical Breakdown Leftof Paschen Minimum' IEEE Trans. on Dielectrics andElectfical Insulation, vol. 1 no. 1, pp. 77-81, 1994 https://doi.org/10.1109/94.300234
  10. M. Muki,T.Okano,S. Nishimoto, L. Kitani, K. Arii, 'Studyon Degradation Diadnosis of partial Discharge in a Voidby Wavelet Analysis.' Ehime University Matsuyama, Ehime,790, Japan
  11. I. Pettersson, N.L. Fantana, U. Sundermann, 'life Asses-merit of Power Transformer Using Condition Based Eva-luation. A New Approach', CIGRE, Paper 12-204, 1998
  12. Mozetic, I., Model-Based Diagnosis: A Overview. Page419-430 of: Advanced Topics in Artificial Intelligence. Springer-Verlag, 1992
  13. J.S. Pearson, et al, 'A Continuous UHF monitor for GasInsulated Substations.' IEEE Trans. on Etect. Insul. vol.26, no. 3, pp. 469-478, 1991 https://doi.org/10.1109/14.85119
  14. P. F. Wilson and M. T. Ma. 'Field radiated byElectrostatic Discharges', IEEE Trans. ElectromagneticCompatibility, vol. 33, no. 1, pp, 10-18, Feb. 1991
  15. K. Nakao, T. Konco, Y. Suzuoki, T. Mizutani, '\Psi-q-nPatterns and Current shapes of partial Discharges in Void', in Proc. of `98 int. Sym. on Elect. Insui. Materi.,in Conjuc. with `98 Asian Int. Conf. on Dielec. and Elect.Isul. and the 30Th Sym. on Elect. Insul. Materials,Toyohashi, pp. 665-668, Japan, Sep. 27-30, 1998
  16. Ella Bingham and Aapo Hyvarinen, 'A Fast Fixed-PointAlgorithm for Independent Component Analysis of Complex Valued Signal', Aapo. Hyvarinen@hut.fi,http://www.cis.hut.fi/projects
  17. L. De Lathauwer, B. De Moor, and J. Vandewalle,'Independent Component Analysis Based on Higher-orderStatistics only.' IEEE SSAP workshop, Corfu, pp. 356-359, 1996 https://doi.org/10.1109/SSAP.1996.534890
  18. D. Obradovic and G. Deco, 'Unsupervised Learning forBlind Source Separation: An Information TheoreticApproach,' in Proc. ICASSP, vol. 1, pp. 127-130, 1997
  19. J. F. Cardoso, 'Estmating equations for Source separation,' in Proc. ICASSP '97, pp. 3449-3452, 1997
  20. A. Bell and T. Sejnowski, "The 'Independent Compo-nents' of natural sences are Edge Filters." Vission Research, vol. 37, pp. 3327-3338, 1997 https://doi.org/10.1016/S0042-6989(97)00121-1