DocumentCode
29656
Title
Evaluation of the Influence of Rotor Axial Air Ducts on Condition Monitoring of Induction Motors
Author
Sungho Lee ; Jongman Hong ; Sang Bin Lee ; Wiedenbrug, Ernesto J. ; Teska, Mike ; Heedong Kim
Author_Institution
Hyundai Heavy Ind. Co., Ltd., Yongin, South Korea
Volume
49
Issue
5
fYear
2013
fDate
Sept.-Oct. 2013
Firstpage
2024
Lastpage
2033
Abstract
Rotor axial air ducts are used in large motors for cooling and for reducing weight and material. The rotor axial ducts can produce twice-slip-frequency (2s fs) components in the vibration or a current spectrum that can be misinterpreted as induction-motor rotor faults. There is currently no practical solution to the air-duct-induced false positive indications, which is an ongoing problem in the field. However, there are only a few publications that report the issues caused by rotor axial ducts. In this paper, the influence of the rotor air ducts on motor condition monitoring is analyzed and investigated through testing in the field on 6.6-kV motors and in the laboratory. The experimental study shows that the magnitude of the 2s fs component due to axial ducts depend on the design, material, construction, and operating conditions of the motor. It is also shown that the 2 sfs component can even decrease with broken bars, depending on the fault position relative to the ducts, which makes online condition monitoring difficult. Guidelines for reliable motor testing and interpretation of test results are also provided.
Keywords
condition monitoring; fault diagnosis; induction motors; rotors; vibrations; air-duct-induced false positive indications; broken bars; induction-motor rotor faults; motor condition monitoring; motor testing; online condition monitoring; rotor axial air ducts; test results; twice-slip-frequency components; vibration; voltage 6.6 kV; Ducts; Induction motors; Magnetic flux; Magnetic separation; Reluctance motors; Rotors; Saturation magnetization; AC machine; axial cooling duct; condition monitoring; diagnostics; electrical fault detection; induction motor; magnetic asymmetry; shaft spider;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2013.2259132
Filename
6506101
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