DocumentCode
2758133
Title
Flexible medium voltage stator coil insulation system for on-site winding
Author
Haq, Saeed Ul ; Omranipour, Ramtin ; Hanna, George ; Lucas, William ; Znidarich, Michael
Author_Institution
GE Energy Manage., Peterborough, ON, Canada
fYear
2012
fDate
10-13 June 2012
Firstpage
291
Lastpage
295
Abstract
The dielectric performance of a fully cured non-VPI flexible stator coil insulation system was investigated by performing winding trials and series of dielectric tests. Different dielectric tests performed were voltage endurance (VE), surge test and thermal cycling. VE and thermal cycling tests are well understood and industry recognized test methods to qualify new or improved insulation systems. These are reliable test methods for comparing new insulation systems with service proven insulation systems. To develop a life curve, VE testing was performed at four different voltage levels and the acquired data was reduced using Weibull analysis. To demonstrate the impact of frequent starts and stops and to determine the effects of temperature rise, a thermal cycling test was performed following IEEE Std. 1310. Diagnostic, AC hipot withstand and VE testing after completion of 500 thermal cycles showed positive results. Stable partial discharge (PD), dissipation factor (DF), and tip-up results were recorded through the thermal cycling testing, which indicated no change in the insulation performance due to thermal cycling. In addition, VE testing after completion of thermal cycles showed promising results and met the requirements as outlined in the IEEE Std. 1553.
Keywords
insulation testing; machine insulation; machine testing; partial discharges; stators; AC Hipot withstand test; DF; IEEE Std. 1310; IEEE Std. 1553; PD; VE test; Weibull analysis; dielectric performance; dielectric tests; dissipation factor; flexible medium voltage stator coil insulation system; fully cured nonVPI flexible stator coil insulation system; on-site winding; partial discharge; surge test; thermal cycling tests; voltage endurance test; Coils; IEEE standards; Insulation; Stator windings; Testing; Windings; Flexible system; ac hipot; dissipation factor; surge; thermal cycling; voltage endurance; winding trial;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Insulation (ISEI), Conference Record of the 2012 IEEE International Symposium on
Conference_Location
San Juan, PR
ISSN
1089-084X
Print_ISBN
978-1-4673-0488-7
Electronic_ISBN
1089-084X
Type
conf
DOI
10.1109/ELINSL.2012.6251475
Filename
6251475
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