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Transient tracking of low and high-order eccentricity-related components in induction motors via TFD tools

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Transient tracking of low and high-order eccentricity-related components in induction motors via TFD tools

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dc.contributor.author Climente Alarcón, Vicente es_ES
dc.contributor.author Antonino-Daviu, J. es_ES
dc.contributor.author Riera-Guasp, Martín es_ES
dc.contributor.author Pons Llinares, Joan es_ES
dc.contributor.author Roger-Folch, José es_ES
dc.contributor.author Jover-Rodriguez, P. es_ES
dc.contributor.author Arkkio, A. es_ES
dc.date.accessioned 2018-03-23T13:18:11Z
dc.date.available 2018-03-23T13:18:11Z
dc.date.issued 2011 es_ES
dc.identifier.issn 0888-3270 es_ES
dc.identifier.uri http://hdl.handle.net/10251/99656
dc.description.abstract [EN] The present work is focused on the diagnosis of mixed eccentricity faults in induction motors via the study of currents demanded by the machine. Unlike traditional methods, based on the analysis of stationary currents (Motor Current Signature Analysis (MCSA)), this work provides new findings regarding the diagnosis approach proposed by the authors in recent years, which is mainly focused on the fault diagnosis based on the analysis of transient quantities, such as startup or plug stopping currents (Transient Motor Current Signature Analysis (TMCSA)), using suitable time-frequency decomposition (TFD) tools. The main novelty of this work is to prove the usefulness of tracking the transient evolution of high-order eccentricity-related harmonics in order to diagnose the condition of the machine, complementing the information obtained with the low-order components, whose transient evolution was well characterised in previous works. Tracking of high-order eccentricity-related harmonics during the transient, through their associated patterns in the time-frequency plane, may significantly increase the reliability of the diagnosis, since the set of fault-related patterns arising after application of the corresponding TFD tool is very unlikely to be caused by other faults or phenomena. Although there are different TFD tools which could be suitable for the transient extraction of these harmonics, this paper makes use of a WignerVille distribution (WVD)-based algorithm in order to carry out the time-frequency decomposition of the startup current signal, since this is a tool showing an excellent trade-off between frequency resolution at both high and low frequencies. Several simulation results obtained with a finite element-based model and experimental results show the validity of this fault diagnosis approach under several faulty and operating conditions. Also, additional signals corresponding to the coexistence of the eccentricity and other non-fault related phenomena making difficult the diagnosis (fluctuating load torque) are included in the paper. Finally, a comparison with an alternative TFD tool the discrete wavelet transform (DWT) applied in previous papers, is also carried out in the contribution. The results are promising regarding the usefulness of the methodology for the reliable diagnosis of eccentricities and for their discrimination against other phenomena. © 2010 Elsevier Ltd.All rights reserved. es_ES
dc.description.sponsorship This work was supported by the Spanish 'Ministerio de Educacion y Ciencia', in the framework of the 'Programa Nacional de proyectos de Investigacion Fundamental', project reference DP12008-06583/DPI.
dc.language Inglés es_ES
dc.publisher Elsevier es_ES
dc.relation.ispartof Mechanical Systems and Signal Processing es_ES
dc.rights Reconocimiento - No comercial - Sin obra derivada (by-nc-nd) es_ES
dc.subject Eccentricities es_ES
dc.subject Fault diagnosis es_ES
dc.subject Induction motors es_ES
dc.subject Transient analysis es_ES
dc.subject WignerVille transform es_ES
dc.subject Finite Element es_ES
dc.subject Fluctuating loads es_ES
dc.subject Frequency resolutions es_ES
dc.subject High-order es_ES
dc.subject Low frequency es_ES
dc.subject Mixed eccentricity es_ES
dc.subject Motor current signature analysis es_ES
dc.subject Operating condition es_ES
dc.subject Order component es_ES
dc.subject Simulation result es_ES
dc.subject Startup current es_ES
dc.subject Stationary currents es_ES
dc.subject Time-frequency decomposition es_ES
dc.subject Time-frequency planes es_ES
dc.subject Transient evolution es_ES
dc.subject Wigner-Ville distribution es_ES
dc.subject Wigner-Ville transform es_ES
dc.subject Computer simulation es_ES
dc.subject Discrete wavelet transforms es_ES
dc.subject Electric fault currents es_ES
dc.subject Finite element method es_ES
dc.subject Harmonic analysis es_ES
dc.subject Machine components es_ES
dc.subject Spot welding es_ES
dc.subject Vector quantization es_ES
dc.subject.classification INGENIERIA ELECTRICA es_ES
dc.title Transient tracking of low and high-order eccentricity-related components in induction motors via TFD tools es_ES
dc.type Artículo es_ES
dc.identifier.doi 10.1016/j.ymssp.2010.08.008 es_ES
dc.relation.projectID info:eu-repo/grantAgreement/MICINN//DPI2008-06583/ES/DESARROLLO DE TECNICAS DE DIAGNOSTICO DE AVERIAS ELECTROMECANICAS EN MAQUINAS ELECTRICAS DE INDUCCION BASADAS EN LA APLICACION DE METODOS AVANZADOS DE ANALISIS DE SEÑAL/ es_ES
dc.rights.accessRights Abierto es_ES
dc.contributor.affiliation Universitat Politècnica de València. Departamento de Ingeniería Eléctrica - Departament d'Enginyeria Elèctrica es_ES
dc.description.bibliographicCitation Climente Alarcón, V.; Antonino-Daviu, J.; Riera-Guasp, M.; Pons Llinares, J.; Roger-Folch, J.; Jover-Rodriguez, P.; Arkkio, A. (2011). Transient tracking of low and high-order eccentricity-related components in induction motors via TFD tools. Mechanical Systems and Signal Processing. 25(2):667-679. https://doi.org/10.1016/j.ymssp.2010.08.008 es_ES
dc.description.accrualMethod S es_ES
dc.relation.publisherversion http://doi.org/10.1016/j.ymssp.2010.08.008 es_ES
dc.description.upvformatpinicio 667 es_ES
dc.description.upvformatpfin 679 es_ES
dc.type.version info:eu-repo/semantics/publishedVersion es_ES
dc.description.volume 25 es_ES
dc.description.issue 2 es_ES
dc.relation.pasarela S\39006 es_ES
dc.contributor.funder Ministerio de Ciencia e Innovación es_ES


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