DocumentCode :
1210155
Title :
An online stator winding resistance estimation technique for temperature monitoring of line-connected induction machines
Author :
Lee, Sang-Bin ; Habetler, Thomas G.
Author_Institution :
GE Global Res. Center, Electr. Machines & Drives Lab., Niskayuna, NY, USA
Volume :
39
Issue :
3
fYear :
2003
Firstpage :
685
Lastpage :
694
Abstract :
A new technique for stator-resistance (Rs)-based thermal monitoring of small line-connected induction machines is proposed in this paper. A simple device is developed for injecting a small DC signal into line-connected induction machines for estimation of Rs. The proposed DC injection device is capable of intermittently injecting a controllable DC bias into the motor with very low power dissipation. Experimental results under motor startup, load variation, and abnormal cooling conditions verify that the proposed technique provides an accurate estimate of Rs that is capable of responding to the changes in the motor thermal characteristics, resulting in reliable thermal protection. The proposed technique is a very practical method for thermal protection of small line-connected induction machines that can be implemented with low cost in a motor condition monitoring system.
Keywords :
condition monitoring; electric resistance; induction motors; machine protection; parameter estimation; starting; stators; temperature measurement; 10 hp; DC injection device; abnormal cooling conditions; controllable DC bias; line-connected induction machines; load variation; motor condition monitoring system; motor startup; motor thermal characteristics; online stator winding resistance estimation; reliable thermal protection; small DC signal injection; small line-connected induction machines; stator-resistance-based thermal monitoring; temperature monitoring; very low power dissipation; Condition monitoring; Cooling; DC motors; Induction machines; Load management; Power dissipation; Stator windings; Temperature measurement; Temperature sensors; Thermal loading;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2003.811789
Filename :
1201535
Link To Document :
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