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Eigenvector/eigenvalue analysis of a 3D current referential fault detection and diagnosis of an induction motor

Pires, V. Fernão and Martins, J. F. and Pires, A. J. (2010) Eigenvector/eigenvalue analysis of a 3D current referential fault detection and diagnosis of an induction motor. Energy Conversion and Management, 51 (5), pp. 901-907. ISSN 0196-8904. URL: http://dx.doi.org/10.1016/j.enconman.2009.11.028.

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Official URL: http://dx.doi.org/10.1016/j.enconman.2009.11.028

Abstract

In this paper an integrated approach for on-line induction motor fault detection and diagnosis is presented. The need to insure a continuous and safety operation for induction motors involves preventive maintenance procedures combined with fault diagnosis techniques. The proposed approach uses an automatic three step algorithm. Firstly, the induction motor stator currents are measured which will give typical patterns that can be used to identify the fault. Secondly, the eigenvectors/eigenvalues of the 3D current referential are computed. Finally the proposed algorithm will discern if the motor is healthy or not and report the extent of the fault. Furthermore this algorithm is able to identify distinct faults (stator winding faults or broken bars). The proposed approach was experimentally implemented and its performance verified on various types of working conditions.

Item Type:Article
Subjects:Engenharia Electrotécnica > Máquinas Eléctricas > Accionamentos Electromecânicos
Divisions:Centre of Technology and Systems 2007-2010 > CTS0710-B Industrial/Manufacturing Systems and Energy Efficiency > CTS0710-B1 Energy
Departamento de Engenharia Electrotécnica 2010 > DEE2010-B Energia e Sistemas > DEE2010-B1 Energia
ID Code:4739
Deposited By:MSc. Pedro Miguel Ribeiro Pereira
Deposited On:06 Apr 2011 11:58
Last Modified:06 Apr 2011 11:58

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