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New model of explanation for phase angle pattern of online partial discharge measurement in winding insulation of turbine generator

Open Access
|Mar 2021

References

  1. [1] IEEE Standards Association. IEEE Guide for the Measurement of Partial Discharges in AC Electric Machinery; IEEE Std 1434TM-2014 (Revision of IEEE Std 1434-2000); IEEE Standards Association: Piscatawy, NJ,USA, 2014.
  2. [2] Y. Luo, Z. Li, and H. Wang, “A Review of Online Partial Discharge Measurement of Large Generators”, Energies, vol. 10, no. 11, p. 1694, 2017.10.3390/en10111694
  3. [3] W. Waluyo, S. Saodah, and E. Hidayatullah, “Internal On-line Partial Discharge Analysis of 68.75 MVA Generator Stator Winding Insulation”, International Journal of Electrical and Computer Engineering, vol. 6, no. 5, p. 2088, 2016.10.11591/ijece.v6i5.10066
  4. [4] M. Henriksen, G. C. Stone, and M. Kurtz, “Propagation of Partial Discharge and Noise Pulses in Turbine Generators”, IEEE Transactions on Energy Conversion, vol. EC-1, no. 3, pp. 161-166, 1986.10.1109/TEC.1986.4765750
  5. [5] V. Warren, G. Stone, and H. Sedding, “Partial Discharge Testing: A Progress Report Stator Winding Insulation Thermal Class”, Qualitrol – Iris Power, PD Progress Report IRMC, p. 17, 2017.
  6. [6] Renforth L. et al, “A New Technique for the Remote Partial Discharge Monitoring of the Stator Insulation of High-Voltage Motors Located in Ex(hazardous) Locations”, 2012 Petroleum and Chemical Industry Technical Conference (PCIC), IEEE, pp. 1–10, 2012.10.1109/PCICON.2012.6549674
  7. [7] W. McDermid, “IEEE Guide for the Measurement of Partial Discharges in AC Electric Machinery”, In2012 IEEE International Symposium on Electrical Insulation, IEEE, pp. 659–660, 2012.10.1109/ELINSL.2012.6251554
  8. [8] International Electrotechnical Commission. Rotating Electrical Machines-Part 27-2: On-Line Partial Discharge Measurements on the Stator Winding Insulation of Rotating Electrical Machines; IEC/TS 60034-27-2; International Electrotechnical Commission: Geneva, Switzerland, 2012.
  9. [9] H. Zhu, V. Green, D. Huynh, and L. Ravenscroft, “How to Identify Stator Insulation Problems using On-Line Partial Discharge Analysis”, 2000 IEEE International Symposium on Electrical Insulation Cat. No. 00CH37075, pp. 506–511, 2000.
  10. [10] G.C. Stone, I. Culbert, E.A. Boulter, H. Dhirani, “Electrical Insulation for Rotating Machines: Design, Evaluation, Aging, Testing, and Repair, 2nd ed.; John Wiley & Sons Inc.: Piscataway, NJ, USA, pp. 159-234, 2014.
  11. [11] V. A. Rusov, “Measurement of Partial Discharges in the Insulation of High-Voltage Electrical Equipment”, Ekaterinburg, USURT, p. 367, 2011.
  12. [12] M. Hoof, S. Lanz, “PD Diagnostics on Rotating Machines. Possibilities and Limitations”, Proceedings: Electrical Insulation Conference and Electrical Manufacturing and Coil Winding Conference (Cat. No. 99CH37035), IEEE, pp. 195–200, 1999.
  13. [13] M. Kurtz, J. F. Lyies, G. C. Stone, “Application of Partial Discharge Testing to Hydro Generator Maintenance, IEEE Transactions On Power Apparatus and Systems., vol. PAS-103, no. 8, pp. 195–200, 1984.10.1109/TPAS.1984.318525
  14. [14] LLC Dimrus, “Guidelines for the Organization of Partial Discharges Measurement in the Insulation of the Stators of High- Voltage Electrical Machines”, Perm: LLC Dimrus, p. 14, 2013.
  15. [15] Iris QMS, “Interpretation of PD Results – On-Line Testing - Version 3.2”, Iris QMS, ver. 3.2, 2010.
  16. [16] J. M. Pemen, “Detection of Partial Discharges in Stator Windings of Turbine Generators”, Eindhoven, Technische Universität, 2000.
  17. [17] Klempner, Geoff, and Isidor Kerszenbaum, “Handbook of Large Turbo-Generator Operation and Maintenance”, 2nd ed., Wiley- IEEE Press, p. 1032, 2018.
  18. [18] A. M. Baboraik, A. E. Usachev, “The State Registration of the Computer Program DIWSGT for the Determination Degradation of Insulation in the Stator Winding of Operating Turbogenerators by the Partial Discharge Method”, Federal Institute of Industrial Property (FIPS), No. 2018662196, 2018.
  19. [19] A. M. Baboraik, A. E. Usachev, Z. M. Ali, “A New Proposed Method for Interpretation On-Line Partial Discharge Measurements Data of Turbine Generator”, J. Electr. Eng. Technol, no. 15, pp. 1301-1311, 2020.
  20. [20] J. Kuffel, P. Kuffel, “High Voltage Engineering Fundamentals”, Newnes, 2000.
  21. [21] A. M. Baboraik, A.E. Usachev, “Features of the Partial Discharges Detection in the Stator Winding of Turbine-Generators in Online and Offline Modes”, Twenty-Third International Scientific and Technical Conference of Students and Postgraduates Students Radio Electronics, Electrical Engineering and Power Engineering: Materials of Reports, Moscow: MEI, vol. 3, p. 400, 2017.
  22. [22] H. A. Illias, G. Chen, P. L. Lewin, Modelling of Partial Discharge Activity in Different Spherical Cavity Sizes and Locations within a Dielectric Insulation Material”, In2009 IEEE 9th International Conference on the Properties and Applications of Dielectric Materials, IEEE, pp. 485–488, 2009.10.1109/ICPADM.2009.5252384
  23. [23] G. A. Mesetes, “The Laws of Similarity in Pulsed Gas Discharges UFN. Reviews of Actual Problems”, vol. 176, no. 10, pp. 1069–1091, 2006.
DOI: https://doi.org/10.2478/jee-2021-0010 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 66 - 77
Submitted on: Sep 11, 2020
Published on: Mar 18, 2021
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2021 Abdulrahman Baboraik, Alexander Usachev, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.