APo-VAE: Text Generation in Hyperbolic Space
Abstract
Natural language often exhibits inherent hierarchical structure ingrained with complex syntax and semantics. However, most state-of-the-art deep generative models learn embeddings only in Euclidean vector space, without accounting for this structural property of language. In this paper, we investigate text generation in a hyperbolic latent space to learn continuous hierarchical representations. An Adversarial Poincare Variational Autoencoder (APo-VAE) is presented, where both the prior and variational posterior of latent variables are defined over a Poincare ball via wrapped normal distributions. By adopting the primal-dual formulation of KL divergence, an adversarial learning procedure is introduced to empower robust model training. Extensive experiments in language modeling and dialog-response generation tasks demonstrate the winning effectiveness of the proposed APo-VAE model over VAEs in Euclidean latent space, thanks to its superb capabilities in capturing latent language hierarchies in hyperbolic space.
Keywords
Cite
@article{arxiv.2005.00054,
title = {APo-VAE: Text Generation in Hyperbolic Space},
author = {Shuyang Dai and Zhe Gan and Yu Cheng and Chenyang Tao and Lawrence Carin and Jingjing Liu},
journal= {arXiv preprint arXiv:2005.00054},
year = {2021}
}