NeurIPS 2019poster49 citations

Copulas as High-Dimensional Generative Models: Vine Copula Autoencoders

Natasa Tagasovska, Damien Ackerer, Thibault Vatter

Abstract

We introduce the vine copula autoencoder (VCAE), a flexible generative model for high-dimensional distributions built in a straightforward three-step procedure. First, an autoencoder (AE) compresses the data into a lower dimensional representation. Second, the multivariate distribution of the encoded data is estimated with vine copulas. Third, a generative model is obtained by combining the estimated distribution with the decoder part of the AE. As such, the proposed approach can transform any already trained AE into a flexible generative model at a low computational cost. This is an advantage over existing generative models such as adversarial networks and variational AEs which can be difficult to train and can impose strong assumptions on the latent space. Experiments on MNIST, Street View House Numbers and Large-Scale CelebFaces Attributes datasets show that VCAEs can achieve competitive results to standard baselines.

BibTeX
@inproceedings{NEURIPS2019_15e122e8,
 author = {Tagasovska, Natasa and Ackerer, Damien and Vatter, Thibault},
 booktitle = {Advances in Neural Information Processing Systems},
 editor = {H. Wallach and H. Larochelle and A. Beygelzimer and F. d\textquotesingle Alch\'{e}-Buc and E. Fox and R. Garnett},
 pages = {},
 publisher = {Curran Associates, Inc.},
 title = {Copulas as High-Dimensional Generative Models: Vine Copula Autoencoders},
 url = {https://proceedings.neurips.cc/paper_files/paper/2019/file/15e122e839dfdaa7ce969536f94aecf6-Paper.pdf},
 volume = {32},
 year = {2019}
}
Copulas as High-Dimensional Generative Models: Vine Copula Autoencoders · NeurIPS 2019