Papers › Tensorizing Neural Networks

Tensorizing Neural Networks

22 Sep 2015NeurIPS 2015 12arXiv:1509.06569archive 2025-07-28

Alexander Novikov, Dmitry Podoprikhin, Anton Osokin, Dmitry Vetrov

Deep neural networks currently demonstrate state-of-the-art performance in several domains. At the same time, models of this class are very demanding in terms of computational resources. In particular, a large amount of memory is required by commonly used fully-connected layers, making it hard to use the models on low-end devices and stopping the further increase of the model size. In this paper we convert the dense weight matrices of the fully-connected layers to the Tensor Train format such that the number of parameters is reduced by a huge factor and at the same time the expressive power of the layer is preserved. In particular, for the Very Deep VGG networks we report the compression factor of the dense weight matrix of a fully-connected layer up to 200000 times leading to the compression factor of the whole network up to 7 times.

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Tasks

Image Classification

Results from the paper archive 2025-07-28

TaskDatasetModelMetricValueRank at snapshotLeaderboardReport
Image Classification MNIST Perceptron with a tensor train layer Accuracy 98.2 #54 of 81 Archive leaderboard report
Image Classification MNIST Perceptron with a tensor train layer Percentage error 1.8 #54 of 81 Archive leaderboard report

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Methods

ConvolutionDense ConnectionsDropoutMax PoolingReLUSoftmax

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