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Broken Rotor Bar Fault Diagnosis Techniques Based on Motor Current Signature Analysis for Induction Motor-A Review

期刊

ENERGIES
卷 15, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/en15228569

关键词

induction motor (IM); broken rotor bar (BRB); motor current signature analysis (MCSA); review

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This paper provides an overview of available fault detection methods for the broken rotor bar problem in induction motors. Despite being less common, this fault can cause catastrophic failures in motors, especially large ones. The study uses current signal analysis to extract probable defect signatures for confirming rotor bar fracture.
The most often used motor in commercial drives is the induction motor. While the induction motor is operating, electrical, thermal, mechanical, magnetic, and environmental stresses can result in defects. Therefore, many researchers who are involved in condition monitoring have been interested in the development of reliable and efficient fault diagnostic technologies. This paper's goal is to provide an overview of available fault detection methods for the broken rotor bar problem, one of several defects associated to induction motors. Despite the fact that it is less common than bearing or insulator failure, this fault may cause electrical machines to fail catastrophically. It can be quite harmful, especially in large motors, and it can develop as a result of manufacturing faults, repeated starting of the machine, mechanical stress, and thermal stress. Hence, a review on rotor defect diagnosis was conducted. In order to confirm rotor bar fracture, this research provides probable defect signatures that can be extracted from the current signal. Each defect signature is reported according to (a) loading level, (b) the number of BRBs, (c) validation, and (d) methodologies.

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