Multi-Agent Cooperation Through Learning-Aware Policy Gradients
Abstract
Self-interested individuals often fail to cooperate, posing a fundamental challenge for multi-agent learning. How can we achieve cooperation among self-interested, independent learning agents? Promising recent work has shown that in certain tasks cooperation can be established between ``learning-aware" agents who model the learning dynamics of each other. Here, we present the first unbiased, higher-derivative-free policy gradient algorithm for learning-aware reinforcement learning, which takes into account that other agents are themselves learning through trial and error based on multiple noisy trials. We then leverage efficient sequence models to condition behavior on long observation histories that contain traces of the learning dynamics of other agents. Training long-context policies with our algorithm leads to cooperative behavior and high returns on standard social dilemmas, including a challenging environment where temporally-extended action coordination is required. Finally, we derive from the iterated prisoner's dilemma a novel explanation for how and when cooperation arises among self-interested learning-aware agents.
Cite
Text
Meulemans et al. "Multi-Agent Cooperation Through Learning-Aware Policy Gradients." International Conference on Learning Representations, 2025.Markdown
[Meulemans et al. "Multi-Agent Cooperation Through Learning-Aware Policy Gradients." International Conference on Learning Representations, 2025.](https://mlanthology.org/iclr/2025/meulemans2025iclr-multiagent/)BibTeX
@inproceedings{meulemans2025iclr-multiagent,
title = {{Multi-Agent Cooperation Through Learning-Aware Policy Gradients}},
author = {Meulemans, Alexander and Kobayashi, Seijin and von Oswald, Johannes and Scherrer, Nino and Elmoznino, Eric and Richards, Blake Aaron and Lajoie, Guillaume and Arcas, Blaise Aguera y and Sacramento, Joao},
booktitle = {International Conference on Learning Representations},
year = {2025},
url = {https://mlanthology.org/iclr/2025/meulemans2025iclr-multiagent/}
}