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Issue title: Special Section: Advances in intelligent computing for diagnostics, prognostics, and system health management
Guest editors: Chuan Li and José Valente de Oliveira
Article type: Research Article
Authors: Sánchez, René-Vinicioa; * | Lucero, Pabloa | Vásquez, Rafael E.b | Cerrada, Marielaa | Macancela, Jean-Carloa | Cabrera, Diegoa
Affiliations: [a] GIDTEC, Universidad Politécnica Salesiana, Cuenca, Ecuador | [b] Department of Mechanical Engineering, Universidad Pontificia Bolivariana, Medellín, Colombia
Correspondence: [*] Corresponding author. René-Vinicio Sánchez, GIDTEC, Universidad Politécnica Salesiana, Calle Vieja 12-30 Elia Liut, Zip code 010105, Cuenca, Ecuador. E-mail: [email protected].
Abstract: Gearboxes and bearings play an important role in industries for motion and torque transmission machines. Therefore, early diagnoses are sought to avoid unplanned shutdowns, catastrophic damage to the machine or human losses; additionally, an appropriate diagnosis contributes to increase productivity and reduce maintenance costs. This paper addresses a methodological framework for the diagnosis of multi-faults in rotating machinery through the use of features rankings. The classification uses K nearest neighbors and random forest, based on the information that comes from the measured vibration signal. Thirty features in time domain are calculated from the vibration signal, twenty-four features commonly used in fault diagnosis in rotating machinery, and six features are used from the field of electromyography. Feature ranking methods such as ReliefF algorithm, Chi-Square, and Information Gain are used to select the ten most relevant features, the same ones that enter the classifiers. Five databases were used to validate the proposed methodological framework. The results show good accuracy in classification for the five databases; furthermore, in all the databases in the first ten features ranked by the three rankings methods are present at least two nonconventional features.
Keywords: Feature ranking, multi-fault diagnosis, rotating machinery, time features
DOI: 10.3233/JIFS-169526
Journal: Journal of Intelligent & Fuzzy Systems, vol. 34, no. 6, pp. 3463-3473, 2018
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