Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/2192
Title: Detection and Identification of Stator Inter-Turn Faults in Three-Phase Induction Motor in Presence of Supply Unbalance Condition
Authors: Rama Devi, N.
Siva Sarma, D.V.S.S
Ramana Rao, P.V
Keywords: Adaptive threshold
Discrete wavelet transform,
Issue Date: 2014
Publisher: 2014 IEEE International Conference on Power Electronics, Drives and Energy Systems, PEDES 2014
Citation: 10.1109/PEDES.2014.7042142
Abstract: Induction machines play a vital role in process industries due to their low cost, ruggedness and low maintenance. Even though the induction machine is very reliable, many failures can occur due to their non-ideal operating conditions. Literature survey reveals that stator faults occupy a prominent place among the reasons for such failures. In particular, an undetected stator inter-turn fault may progressively lead to a permanent damage of the machine. Hence, early detection of stator inter-turn faults is essential for preventing damage to the adjacent coils and the core of the stator. Also, detection of stator inter-turn faults in the presence of supply unbalance is another challenging task. This paper proposes a new adaptive approach based on wavelet multi-resolution analysis for detecting and identifying the stator inter-turn faults. A fault index is defined based on the slope of detail coefficients to compare with an adaptive threshold for setting the flags. A fault is detected when the flag count reaches 6 over a moving window of 10 samples. Severity of the fault is identified by defining a sensitivity index based on the three phase energies of 4 th level approximate coefficients. The proposed method is verified by using experimental data considering supply unbalance as well. Results indicate the effectiveness of the proposed method.
Description: NITW
URI: http://localhost:8080/xmlui/handle/123456789/2192
Appears in Collections:Electronics and Communication Engineering



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