Assessment of Stator Winding Insulation by Spectroscopic and Thermo-Analytical Techniques

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B. Nageshwar Rao
J. Sundara Rajan
B. Ramachandra

Abstract

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How to Cite
Nageshwar Rao, B., Sundara Rajan, J., & Ramachandra, B. (2010). Assessment of Stator Winding Insulation by Spectroscopic and Thermo-Analytical Techniques. Power Research - A Journal of CPRI, 5(2), 1–10. Retrieved from https://node6473.myfcloud.com/~geosocin/CPRI/index.php/pr/article/view/690

References

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  3. Stark K H. "Assessment of the insulation serviceability of turbo generator stators and of HV bushings", Proceedings A, 1962, pp. 71–88.
  4. Stone G C. "Toward assessing the remaining life of rotating machine insulation, Proceedings 18th EEIC, 1987, pp. 71–76.
  5. Tanaka T. "Aging of polymeric and composite insulating materials", IEEE Trans of Dielectrics and E.I. Vol. 9, No 5, 2002.
  6. Tanaka T. "Internal partial discharge and material degradation", IEEE Trans on EI, Vol. 21, No. 6, December 1986.
  7. Peter H F Morshuis. "Degradation of solid dielectrics due to internal partial discharge: Some thoughts on progress made and where to go now", IEEE Tans. On Dielectrics and E.I, Vol. 12, No. 5, 2005.
  8. Kin Y J and Nelson J K. "Assessment of deterioration of epoxy-mica machine insulation, Trans. on EI, Vol. 27, No. 5, 1992.
  9. Ross McDonald J. Impedance spectroscopy emphasizing solid materials and systems, John Wiley and Sons, New York, 1987.
  10. Gerhardt R. "Dielectric and impedance spectroscopy J. Phys. Chem. Solids 55, 1994, pp. 1491–1506.
  11. Nageshwar Rao B, Vynatheya A Sudhindra, Agarwal1 S P, Miraj S A, Saha C R and Ramachandra B. "Study on insulation diagnosis of HV rotating electrical machine based on structural changes due to aging" ICPDAM conference, July 2009, China.

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