In plain words: Instead of stacking many layers, they trained a shallow network to copy the function a deep network had already learned. On phoneme recognition, it matched a deep model's accuracy, and in some cases used a similar number of parameters.
Abstract · Do Deep Nets Really Need to be Deep?
Currently, deep neural networks are the state of the art on problems such as speech recognition and computer vision. In this extended abstract, we show that shallow feed-forward networks can learn the complex functions previously learned by deep nets and achieve accuracies previously only achievable with deep models. Moreover, in some cases the shallow neural nets can learn these deep functions using a total number of parameters similar to the original deep model. We evaluate our method on the TIMIT phoneme recognition task and are able to train shallow fully-connected nets that perform similarly to complex, well-engineered, deep convolutional architectures. Our success in training shallow neural nets to mimic deeper models suggests that there probably exist better algorithms for training shallow feed-forward nets than those currently available.
Lei Jimmy Ba, Rich Caruana
arXiv:1312.6184 · cs.LG, cs.NE · submitted Dec 21, 2013 · updated Oct 11, 2014
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