DocumentCode
1336946
Title
Wavelet-based switching faults detection in direct torque control induction motor drives
Author
Aktas, Mustafa ; Turkmenoglu, V.
Author_Institution
Electr. & Energy Dept., Ordu Univ., Ordu, Turkey
Volume
4
Issue
6
fYear
2010
fDate
11/1/2010 12:00:00 AM
Firstpage
303
Lastpage
310
Abstract
This study describes a method of detection and identification of IGBT-based drive open-circuit faults in direct torque control (DTC) induction motor drives. The detection mechanism is based on wavelet decomposition. The Symlet2 wavelet was selected as the wavelet base to perform stator current analysis during transients. In this method, the stator currents will be used as an input to the system. The MATLAB program was used to process discreet wavelet transform (DWT) of the signals. The stator current was used for the detection of the fault. When an open-circuit fault appears in an inverter IGBT, the signal fault information is included in each frequency region. There are spikes in the sixth level detail for incipient faults. The time of the spikes in the DWT is correlated with the time of fault. As a result of time domain studies, a faulty system can be easily discriminated from a healthy one. In this study the analysis of electrical transients arising during switch open-circuit faults in a three-phase power inverter feeding DTC induction motor drives was decomposed using the wavelet transform. The results demonstrate that the proposed fault detection and diagnosis system has very good capabilities.
Keywords
discrete wavelet transforms; fault currents; fault diagnosis; induction motor drives; invertors; power semiconductor switches; power supply quality; stators; switching transients; torque control; DWT; Matlab program; direct torque control; discrete wavelet transform; electrical transients; fault diagnosis; induction motor drives; inverter IGBT; open circuit faults; spikes; stator current analysis; switching faults detection; three-phase power inverter; wavelet decomposition;
fLanguage
English
Journal_Title
Science, Measurement & Technology, IET
Publisher
iet
ISSN
1751-8822
Type
jour
DOI
10.1049/iet-smt.2009.0121
Filename
5586668
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