Non-Gaussian processes and neural networks at finite widths
Abstract
Gaussian processes are ubiquitous in nature and engineering. A case in point is a class of neural networks in the infinite-width limit, whose priors correspond to Gaussian processes. Here we perturbatively extend this correspondence to finite-width neural networks, yielding non-Gaussian processes as priors. The methodology developed herein allows us to track the flow of preactivation distributions by progressively integrating out random variables from lower to higher layers, reminiscent of renormalization-group flow. We further develop a perturbative procedure to perform Bayesian inference with weakly non-Gaussian priors.
Keywords
Cite
@article{arxiv.1910.00019,
title = {Non-Gaussian processes and neural networks at finite widths},
author = {Sho Yaida},
journal= {arXiv preprint arXiv:1910.00019},
year = {2020}
}
Comments
33 pages, 3 figures; v2: final version accepted at MSML 2020, with some clarification on the connection to renormalization-group flow