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Understanding Priors in Bayesian Neural Networks at the Unit Level

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arxiv 1810.05193 v2 pith:5BJIPFSQ submitted 2018-10-11 stat.ML cs.LG

Understanding Priors in Bayesian Neural Networks at the Unit Level

classification stat.ML cs.LG
keywords bayesiannetworksneuralunitsgaussianlayerpriorsdeep
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We investigate deep Bayesian neural networks with Gaussian weight priors and a class of ReLU-like nonlinearities. Bayesian neural networks with Gaussian priors are well known to induce an L2, "weight decay", regularization. Our results characterize a more intricate regularization effect at the level of the unit activations. Our main result establishes that the induced prior distribution on the units before and after activation becomes increasingly heavy-tailed with the depth of the layer. We show that first layer units are Gaussian, second layer units are sub-exponential, and units in deeper layers are characterized by sub-Weibull distributions. Our results provide new theoretical insight on deep Bayesian neural networks, which we corroborate with simulation experiments.

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