The nature of unsupervised learning in deep neural networks: A new understanding and novel approach


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Over the last decade, the deep neural networks are a hot topic in machine learning. It is breakthrough technology in processing images, video, speech, text and audio. Deep neural network permits us to overcome some limitations of a shallow neural network due to its deep architecture. In this paper we investigate the nature of unsupervised learning in restricted Boltzmann machine. We have proved that maximization of the log-likelihood input data distribution of restricted Boltzmann machine is equivalent to minimizing the cross-entropy and to special case of minimizing the mean squared error. Thus the nature of unsupervised learning is invariant to different training criteria. As a result we propose a new technique called “REBA” for the unsupervised training of deep neural networks. In contrast to Hinton’s conventional approach to the learning of restricted Boltzmann machine, which is based on linear nature of training rule, the proposed technique is founded on nonlinear training rule. We have shown that the classical equations for RBM learning are a special case of the proposed technique. As a result the proposed approach is more universal in contrast to the traditional energy-based model. We demonstrate the performance of the REBA technique using wellknown benchmark problem. The main contribution of this paper is a novel view and new understanding of an unsupervised learning in deep neural networks.

作者简介

V. Golovko

Brest State Technical University; National Research Nuclear University (MEPHI)

编辑信件的主要联系方式.
Email: gva@bstu.by
俄罗斯联邦, Belarus; Moscow

A. Kroshchanka

Brest State Technical University

Email: gva@bstu.by
俄罗斯联邦, Belarus

D. Treadwell

Aff3

Email: gva@bstu.by
美国, 5339 Iron Horse Pkwy, Dublin, CA, 94568

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