DocumentCode :
1516204
Title :
Induction-Motor Rotor Temperature Estimation Using Superheterodyne Receivers
Author :
Gao, Zhi ; Colby, Roy S. ; Turner, Larry
Author_Institution :
Strategy & Innovation, Schneider Electr., Knightdale, NC, USA
Volume :
48
Issue :
4
fYear :
2012
Firstpage :
1267
Lastpage :
1278
Abstract :
A rotor temperature estimator is proposed in this paper for grid-connected squirrel-cage induction motors during dynamic or steady-state operations. The method utilizes a pipelined architecture with two superheterodyne receivers that operate on a common complex current vector input. The first superheterodyne receiver detects motor speed by extracting an instantaneous rotor-slot-harmonic frequency from the complex current vector. The second superheterodyne receiver extracts a complex fundamental current vector from the same complex current vector. Given a few known motor parameters and a complex voltage vector, a model-reference adaptive system then produces an estimate of the rotor time constant from the superheterodyne receivers´ outputs. Finally, the rotor temperature is derived from the estimated rotor time constant via a correlation between the rotor temperature and its resistance. Experimental results demonstrate that the proposed method is capable of estimating induction-motor rotor temperature on a sample-by-sample basis without using temperature or speed sensors.
Keywords :
rotors; squirrel cage motors; superheterodyne receivers; common complex current vector input; complex fundamental current vector; grid-connected squirrel-cage induction motors; induction-motor rotor temperature estimation; model-reference adaptive system; pipelined architecture; rotor-slot-harmonic frequency; sample-by-sample basis; speed sensors; superheterodyne receivers; temperature sensors; Harmonic analysis; Induction motors; Power harmonic filters; Receivers; Rotors; Vectors; Condition monitoring; induction motor; instantaneous frequency; model-reference adaptive system (MRAS); motor thermal protection; rotor slot harmonics; temperature estimation;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2012.2199271
Filename :
6199975
Link To Document :
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