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Veuillez utiliser cette adresse pour citer ce document : http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7201

Titre: Tool wear condition monitoring based on wavelet transform and improved extreme learning machine
Auteur(s): Laddada, Sofiane
Ouali Si-Chaib, Mouhamed
Benkedjouh, Tarak
Drai, Redouane
Mots-clés: Tool condition monitoring
Features extraction
Acoustic emission
Prognostics and health management
Improved extreme learning machine
Complex continuous wavelet transform
Remaining useful life
Date de publication: 2019
Editeur: Sage journals
Collection/Numéro: .J Mechanical Engineering Science (2019);1–12
Résumé: In machining process, tool wear is an inevitable consequence which progresses rapidly leading to a catastrophic failure of the system and accidents. Moreover, machinery failure has become more costly and has undesirable consequences on the availability and the productivity. Consequently, developing a robust approach for monitoring tool wear condition is needed to get accurate product dimensions with high quality surface and reduced stopping time of machines. Prognostics and health management has become one of the most challenging aspects for monitoring the wear condition of cutting tools. This study focuses on the evaluation of the current health condition of cutting tools and the prediction of its remaining useful life. Indeed, the proposed method consists of the integration of complex continuous wavelet transform (CCWT) and improved extreme learning machine (IELM). In the proposed IELM, the hidden layer output matrix is given by inverting the Moore–Penrose generalized inverse. After the decomposition of the acoustic emission signals using CCWT, the nodes energy of coefficients have been taken as relevant features which are then used as inputs in IELM. The principal idea is that a non-linear regression in a feature space of high dimension is involved by the extreme learning machine to map the input data via a non-linear function for generating the degradation model. Then, the health indicator is obtained through the exploitation of the derived model which is in turn used to estimate the remaining useful life. The method was carried out on data of the real world collected during various cuts of a computer numerical controlled tool.
URI/URL: DOI: 10.1177/0954406219888544
http://dlibrary.univ-boumerdes.dz:8080/handle/123456789/7201
Collection(s) :Publications Internationales

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