DocumentCode :
1038466
Title :
An online groundwall and phase-to-phase insulation quality assessment technique for AC-machine stator windings
Author :
Lee, Sang Bin ; Yang, Jinkyu ; Younsi, Karim ; Bharadwaj, Raj Mohan
Author_Institution :
Dept. of Electr. Eng., Korea Univ., Seoul
Volume :
42
Issue :
4
fYear :
2006
Firstpage :
946
Lastpage :
957
Abstract :
An online technique for monitoring the condition of the groundwall (GW) and phase-to-phase (PP) insulation for three-phase ac-machine stator windings is proposed in this paper. Insulation-condition indicators such as capacitance, dissipation factor (tandelta), and ac insulation resistance are calculated online based on the differential leakage-current measurements for each phase. A model for a three-phase ac-machine insulation system is derived and analyzed for both offline and online testing. Guidelines for interpreting the measured indicators for determining the: 1) overall condition and 2) significant degradation in the individual GW and PP insulation for each phase of the stator are given based on the analysis. Experimental results on a 15-hp induction motor under intentional GW and PP insulation degradation conditions show that incipient insulation degradation can be detected and classified with high sensitivity
Keywords :
AC machines; condition monitoring; insulation testing; machine insulation; machine testing; stators; 15 hp; AC-machine stator windings; ac insulation resistance; capacitance; condition monitoring; differential leakage current measurement; dissipation factor; induction motor; insulation condition indicators; online groundwall; phase-to-phase insulation quality assessment; three-phase ac machine insulation system; Capacitance measurement; Condition monitoring; Degradation; Electrical resistance measurement; Guidelines; Insulation testing; Phase measurement; Quality assessment; Stator windings; System testing; AC machines; capacitance; dissipation factor; fault diagnosis; groundwall (GW) insulation; insulation resistance (IR); insulation testing; online condition monitoring; phase-to-phase (PP) insulation;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2006.876077
Filename :
1658323
Link To Document :
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