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Veuillez utiliser cette adresse pour citer ce document : http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7536

Titre: Processor in the loop based rotor bars fault diagnosis of an induction machine
Auteur(s): Deboucha, Abdelhakim
Ait Mouloud, Louiza
Ounass, Badredine
Bayou, Nada
Mots-clés: Induction machines
FFT
Broken bars
Rotor Faults
Processor in the Loop
STM32
Date de publication: 2022
Editeur: Springer
Résumé: Induction machines are found in hazardous environments where they are exposed to harsh conditions resulting in failures that lead eventually to the machine downtimes, therefore, production shutdowns, financial losses, and waste of raw materials. Hence, to prevent such catastrophic consequences, online detection and diagnosis of such faults becomes of interest. In this study, the induction machine model has been developed along with faulty cases when the squirrel cage bars/end ring are cracked. Using MATLAB software, the model is simulated for healthy and faulty cases along with Fast Fourier Transform analysis. Three faulty cases were taken into consideration; where, two adjacent, two separated broken bars and the end ring cracking are simulated. Moreover, and as a preliminary to real time diagnosis, the FFT is implemented on the STM32 as a processor in the loop (PIL) to quickly detect the failure in the IM. Simulation results show that time domain analysis could only categorize whether the IM is healthy or faulty. Whereas, spectral analysis would give more insight on the failure by detecting the number of broken bars. On the other hand, the FFT implementation on the STM32 board raises promises to give initial real diagnosis failures that existed on the induction machine
URI/URL: https://link.springer.com/chapter/10.1007/978-3-030-92038-8_74
DOI 10.1007/978-3-030-92038-8_74
http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7536
ISBN: 978-303092037-1
Collection(s) :Communications Internationales

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