Rolling bearing fault diagnosis using adaptive deep belief network with dual-tree complex wavelet packet

ISA Transactions
Haidong ShaoYanan Wang

Abstract

Automatic and accurate identification of rolling bearing fault categories, especially for the fault severities and compound faults, is a challenge in rotating machinery fault diagnosis. For this purpose, a novel method called adaptive deep belief network (DBN) with dual-tree complex wavelet packet (DTCWPT) is developed in this paper. DTCWPT is used to preprocess the vibration signals to refine the fault characteristics information, and an original feature set is designed from each frequency-band signal of DTCWPT. An adaptive DBN is constructed to improve the convergence rate and identification accuracy with multiple stacked adaptive restricted Boltzmann machines (RBMs). The proposed method is applied to the fault diagnosis of rolling bearings. The results confirm that the proposed method is more effective than the existing methods.

References

Aug 16, 2002·Neural Computation·Geoffrey E Hinton
Jun 13, 2006·Neural Computation·Geoffrey E HintonYee-Whye Teh
Jul 29, 2006·Science·G E Hinton, R R Salakhutdinov
Feb 8, 2008·Neural Computation·Nicolas Le Roux, Yoshua Bengio
Jun 22, 2013·IEEE Transactions on Pattern Analysis and Machine Intelligence·Yoshua BengioPascal Vincent
Dec 3, 2014·Neural Networks : the Official Journal of the International Neural Network Society·Jürgen Schmidhuber
May 29, 2015·Nature·Yann LeCunGeoffrey Hinton
Dec 3, 2015·ISA Transactions·Tianzhen WangDiju Gao
Feb 4, 2016·ISA Transactions·Marcin MrugalskiChristophe Aubrun

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