English

Reinforcement learning with reputation-based adaptive exploration promotes the evolution of cooperation

Computational Physics 2026-04-10 v1

Abstract

Multi-agent reinforcement learning serves as an effective tool for studying strategy adaptation in evolutionary games. Although prior work has integrated Q-learning with reputation mechanisms to promote cooperation, most existing algorithms adopt fixed exploration rates and overlook the influence of social context on exploratory behavior. In practice, individuals may adjust their willingness to explore based on their reputation and perceived social standing. To address this, we propose a Q-learning model that couples exploration rates with local reputation differences and incorporates asymmetric, state-dependent reputation updates. Our results show that each mechanism independently promotes cooperation, and their combination yields a reinforcing effect. The joint mechanism enhances cooperation by making ``high reputation--low exploration, low reputation--high exploration'', while adjusting reputation updates to amplify cooperative gains at low status and defection penalties at high status. This study thus offers insights into how social evaluation can shape learning behavior in complex environments.

Keywords

Cite

@article{arxiv.2604.08103,
  title  = {Reinforcement learning with reputation-based adaptive exploration promotes the evolution of cooperation},
  author = {An Li and Wenqiang Zhu and Chaoqian Wang and Longzhao Liu and Hongwei Zheng and Yishen Jiang and Xin Wang and Shaoting Tang},
  journal= {arXiv preprint arXiv:2604.08103},
  year   = {2026}
}

Comments

12 pages, 6 figures

R2 v1 2026-07-01T12:00:57.986Z