On the Properties of Kullback-Leibler Divergence Between Multivariate Gaussian Distributions
Abstract
Kullback-Leibler (KL) divergence is one of the most important divergence measures between probability distributions. In this paper, we prove several properties of KL divergence between multivariate Gaussian distributions. First, for any two -dimensional Gaussian distributions and , we give the supremum of when . For small , we show that the supremum is . This quantifies the approximate symmetry of small KL divergence between Gaussians. We also find the infimum of when . We give the conditions when the supremum and infimum can be attained. Second, for any three -dimensional Gaussians , , and , we find an upper bound of if and for . For small and , we show the upper bound is . This reveals that KL divergence between Gaussians follows a relaxed triangle inequality. Importantly, all the bounds in the theorems presented in this paper are independent of the dimension . Finally, We discuss the applications of our theorems in explaining counterintuitive phenomenon of flow-based model, deriving deep anomaly detection algorithm, and extending one-step robustness guarantee to multiple steps in safe reinforcement learning.
Keywords
Cite
@article{arxiv.2102.05485,
title = {On the Properties of Kullback-Leibler Divergence Between Multivariate Gaussian Distributions},
author = {Yufeng Zhang and Wanwei Liu and Zhenbang Chen and Ji Wang and Kenli Li},
journal= {arXiv preprint arXiv:2102.05485},
year = {2023}
}
Comments
arXiv admin note: text overlap with arXiv:2002.03328