DocumentCode :
1602362
Title :
Diagnosis of rotor faults of induction motors, operated in non-rated conditions
Author :
Dimitrov, Lyubomir V. ; Chobanov, Valery J.
Author_Institution :
TU, Varna, Bulgaria
Volume :
1
fYear :
2004
Firstpage :
110
Abstract :
Since the number of different induction motor applications is continuously increasing, the questions of current interest are those regarding the diagnosis of their technical condition. There are many different methods for on-line diagnostics of incipient rotor faults (broken rotor bars, rings etc.) that occur during their operation. One of the most frequently used method is the frequency analysis of the stator current using the FFT-transformation (MCSA) method. This is easy to apply and is non-invasive with respect to the motor construction. The subject of consideration in the following material is the application of this method when the motor has an asymmetrical power supply and is also using an autonomous power invertor. Also presented are the characteristic frequencies from experiments with a broken induction motor rotor bar as well as possible ways for diagnosis of this condition. Different ways to implement this method are given when the induction motor has a frequency converter supply.
Keywords :
fast Fourier transforms; fault diagnosis; frequency convertors; induction motors; invertors; rotors; spectral analysis; stators; FFT; MCSA method; asymmetrical power supply; autonomous power invertor; broken rotor bars; broken rotor rings; frequency converter supply; incipient rotor faults; induction motor rotor fault diagnosis; motor current signature analysis; motor current spectrum analysis; nonrated motor operating conditions; on-line diagnostics; stator current frequency analysis; stator current spectrum; voltage debalance; Bars; Circuit faults; Fault diagnosis; Frequency; Induction motors; Inverters; Power supplies; Rotors; Stators; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics Technology: Meeting the Challenges of Electronics Technology Progress, 2004. 27th International Spring Seminar on
Print_ISBN :
0-7803-8422-9
Type :
conf
DOI :
10.1109/ISSE.2004.1490387
Filename :
1490387
Link To Document :
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