DocumentCode
1324134
Title
A Novel Transform Demodulation Algorithm for Motor Incipient Fault Detection
Author
Hu, Niao Qing ; Xia, Lu Rui ; Gu, Feng Shou ; Qin, Guo Jun
Author_Institution
Coll. of Mechatron. Eng. & Autom., Nat. Univ. of Defense Technol., Changsha, China
Volume
60
Issue
2
fYear
2011
Firstpage
480
Lastpage
487
Abstract
Faults, such as broken rotor bars, in induction motors may be detected by estimating the spectral signature of the stator currents, particularly the sidebands around the supply line frequency. However, the amplitude of the fundamental frequency (50 Hz) is considerably greater than the sideband amplitude. How to demodulate the signature frequency components under the heavy background of fundamental frequency, or how to remove the fundamental frequency, is becoming a key problem in motor current signature analysis. This paper puts forward a novel transform demodulation algorithm to solve the problem. The three-phase currents are transformed to a magnetic-torque (M-T) coordinate using this algorithm. It is found that the signature frequency components are demodulated in the magnetizing and torque-producing currents obtained by the transformation. Thus, the two demodulated M-T currents can be used to extract the enhanced signature frequency components of faults, and the incipient fault detection of induction motors is easy to realize. With both simulated and experimental data of broken rotor bars, it shows that the proposed algorithm can extract more detailed fault signature frequency components and realize the incipient fault detection of induction motors.
Keywords
demodulation; fault diagnosis; induction motors; broken rotor bars; fundamental frequency; induction motors; motor current signature analysis; motor incipient fault detection; signature frequency components; spectral signature; supply line frequency; transform demodulation algorithm; Bars; Demodulation; Fault detection; Induction motors; Integrated circuits; Rotors; Transforms; Broken rotor bars; fault signature frequency; incipient fault detection; induction motor; motor current signature analysis (MCSA); transform demodulation;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/TIM.2010.2050980
Filename
5570997
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