Squared Neural Families: A New Class of Tractable Density Models

05/22/2023
by   Russell Tsuchida, et al.
0

Flexible models for probability distributions are an essential ingredient in many machine learning tasks. We develop and investigate a new class of probability distributions, which we call a Squared Neural Family (SNEFY), formed by squaring the 2-norm of a neural network and normalising it with respect to a base measure. Following the reasoning similar to the well established connections between infinitely wide neural networks and Gaussian processes, we show that SNEFYs admit a closed form normalising constants in many cases of interest, thereby resulting in flexible yet fully tractable density models. SNEFYs strictly generalise classical exponential families, are closed under conditioning, and have tractable marginal distributions. Their utility is illustrated on a variety of density estimation and conditional density estimation tasks. Software available at https://github.com/RussellTsuchida/snefy.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
05/29/2021

Deconvolutional Density Network: Free-Form Conditional Density Estimation

Conditional density estimation is the task of estimating the probability...
research
09/28/2022

ButterflyFlow: Building Invertible Layers with Butterfly Matrices

Normalizing flows model complex probability distributions using maps obt...
research
04/28/2022

On the Normalizing Constant of the Continuous Categorical Distribution

Probability distributions supported on the simplex enjoy a wide range of...
research
12/02/2021

HyperSPNs: Compact and Expressive Probabilistic Circuits

Probabilistic circuits (PCs) are a family of generative models which all...
research
12/13/2021

A Complete Characterisation of ReLU-Invariant Distributions

We give a complete characterisation of families of probability distribut...
research
11/25/2022

Copula Density Neural Estimation

Probability density estimation from observed data constitutes a central ...
research
06/08/2021

Marginalizable Density Models

Probability density models based on deep networks have achieved remarkab...

Please sign up or login with your details

Forgot password? Click here to reset