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Research PaperResearchia:202609.30029

Achieving an $O(1/N)$ Optimality Gap in Average-Reward Weakly-Coupled MDPs

Yige Hong

Abstract

We study average-reward weakly-coupled Markov decision processes (WCMDPs), where a WCMDP consists of $N$ smaller MDPs, called arms, that share multiple per-step budget constraints. We consider the setting where the arms have identical model parameters, multiple actions, and state- and action-dependent costs. For restless bandits (RBs), a well-studied special case of WCMDPs, prior work has developed policies that achieve an $O(1/\sqrt{N})$ optimality gap under general conditions, and has further ...

Submitted: September 30, 2026Subjects: Mathematics; Mathematics

Description / Details

We study average-reward weakly-coupled Markov decision processes (WCMDPs), where a WCMDP consists of NN smaller MDPs, called arms, that share multiple per-step budget constraints. We consider the setting where the arms have identical model parameters, multiple actions, and state- and action-dependent costs. For restless bandits (RBs), a well-studied special case of WCMDPs, prior work has developed policies that achieve an O(1/N)O(1/\sqrt{N}) optimality gap under general conditions, and has further identified conditions under which policies can achieve a better-than-1/N1/\sqrt{N} optimality gap. However, for general WCMDPs, no prior result achieves an optimality gap better than 1/N1/\sqrt{N}. In this paper, we identify conditions analogous to those for RBs under which a better-than-1/N1/\sqrt{N} optimality gap is achievable, and design a policy that attains an O(1/N)O(1/N) optimality gap. Notably, unlike prior approaches based on generalizing priority orderings, our policy is not priority-based but rather is designed to induce locally linear mean-field dynamics.


Source: arXiv:2609.38132v1 - http://arxiv.org/abs/2609.38132v1 PDF: https://arxiv.org/pdf/2609.38132v1 Original Link: http://arxiv.org/abs/2609.38132v1

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Date:
Sep 30, 2026
Topic:
Mathematics
Area:
Mathematics
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