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Fast Global Convergence of Natural Policy Gradient Methods with Entropy Regularization

Machine Learning 2022-09-13 v5 Information Theory Machine Learning math.IT Optimization and Control

Abstract

Natural policy gradient (NPG) methods are among the most widely used policy optimization algorithms in contemporary reinforcement learning. This class of methods is often applied in conjunction with entropy regularization -- an algorithmic scheme that encourages exploration -- and is closely related to soft policy iteration and trust region policy optimization. Despite the empirical success, the theoretical underpinnings for NPG methods remain limited even for the tabular setting. This paper develops non-asymptotic\textit{non-asymptotic} convergence guarantees for entropy-regularized NPG methods under softmax parameterization, focusing on discounted Markov decision processes (MDPs). Assuming access to exact policy evaluation, we demonstrate that the algorithm converges linearly -- or even quadratically once it enters a local region around the optimal policy -- when computing optimal value functions of the regularized MDP. Moreover, the algorithm is provably stable vis-\`a-vis inexactness of policy evaluation. Our convergence results accommodate a wide range of learning rates, and shed light upon the role of entropy regularization in enabling fast convergence.

Keywords

Cite

@article{arxiv.2007.06558,
  title  = {Fast Global Convergence of Natural Policy Gradient Methods with Entropy Regularization},
  author = {Shicong Cen and Chen Cheng and Yuxin Chen and Yuting Wei and Yuejie Chi},
  journal= {arXiv preprint arXiv:2007.06558},
  year   = {2022}
}

Comments

v2 adds new proofs and improved results; accepted to Operations Research

R2 v1 2026-06-23T17:05:08.249Z