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Deep Network Classification by Scattering and Homotopy Dictionary Learning

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arxiv 1910.03561 v3 pith:4ZRPGA5Z submitted 2019-10-08 cs.LG cs.CVstat.ML

Deep Network Classification by Scattering and Homotopy Dictionary Learning

classification cs.LG cs.CVstat.ML
keywords classificationdeepnetworkdictionarylearningscatteringconvergenceconvolutional
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We introduce a sparse scattering deep convolutional neural network, which provides a simple model to analyze properties of deep representation learning for classification. Learning a single dictionary matrix with a classifier yields a higher classification accuracy than AlexNet over the ImageNet 2012 dataset. The network first applies a scattering transform that linearizes variabilities due to geometric transformations such as translations and small deformations. A sparse $\ell^1$ dictionary coding reduces intra-class variability while preserving class separation through projections over unions of linear spaces. It is implemented in a deep convolutional network with a homotopy algorithm having an exponential convergence. A convergence proof is given in a general framework that includes ALISTA. Classification results are analyzed on ImageNet.

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