DocumentCode :
1503917
Title :
An ESPRIT-SAA-Based Detection Method for Broken Rotor Bar Fault in Induction Motors
Author :
Xu, Boqiang ; Sun, Liling ; Xu, Lie ; Xu, Guoyi
Author_Institution :
Sch. of Electr. Eng., North China Electr. Power Univ., Baoding, China
Volume :
27
Issue :
3
fYear :
2012
Firstpage :
654
Lastpage :
660
Abstract :
This paper presents a novel detection method for broken rotor bar fault (BRB) in induction motors based on the estimation of signal parameters via rotational invariance technique (ESPRIT) and simulated annealing algorithm (SAA). The performance of ESPRIT is tested with the simulated stator current signal of an induction motor with BRB. It shows that even with short-time measurement data, the technique is capable of correctly identifying the frequencies of the BRB characteristic components but with a low accuracy on the amplitudes and initial phases of those components. The SAA is then used to determine their amplitudes and initial phases and shows satisfactory results. Finally, experiments on a 3-kW, 380-V, 50-Hz induction motor are conducted to demonstrate the effectiveness of the ESPRIT-SAA-based method in detecting BRB with short-time measurement data. It proves that the proposed method is a promising choice for BRB detection in induction motors operating with small slip and fluctuant load.
Keywords :
fault diagnosis; induction motors; parameter estimation; rotors; signal detection; simulated annealing; BRB characteristic components; ESPRIT-SAA-based detection method; SAA; broken rotor bar fault; estimation of signal parameters via rotational invariance technique; frequency 50 Hz; induction motors; power 3 kW; short-time measurement data; simulated annealing algorithm; simulated stator current signal; voltage 380 V; Current measurement; Frequency measurement; Induction motors; Metals; Rotors; Spectral analysis; Stators; Broken rotor bar; detection; estimation of signal parameters via rotational invariance technique (ESPRIT); induction motor; simulated annealing algorithm (SAA);
fLanguage :
English
Journal_Title :
Energy Conversion, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8969
Type :
jour
DOI :
10.1109/TEC.2012.2194148
Filename :
6190722
Link To Document :
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