A Model-Based Solution to the Offline Multi-Agent Reinforcement Learning Coordination Problem

Fuente: arXiv
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Autori principali: Barde, Paul, Foerster, Jakob, Nowrouzezahrai, Derek, Zhang, Amy
Natura: Preprint
Pubblicazione: 2023
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author Barde, Paul
Foerster, Jakob
Nowrouzezahrai, Derek
Zhang, Amy
author_facet Barde, Paul
Foerster, Jakob
Nowrouzezahrai, Derek
Zhang, Amy
contents Training multiple agents to coordinate is an essential problem with applications in robotics, game theory, economics, and social sciences. However, most existing Multi-Agent Reinforcement Learning (MARL) methods are online and thus impractical for real-world applications in which collecting new interactions is costly or dangerous. While these algorithms should leverage offline data when available, doing so gives rise to what we call the offline coordination problem. Specifically, we identify and formalize the strategy agreement (SA) and the strategy fine-tuning (SFT) coordination challenges, two issues at which current offline MARL algorithms fail. Concretely, we reveal that the prevalent model-free methods are severely deficient and cannot handle coordination-intensive offline multi-agent tasks in either toy or MuJoCo domains. To address this setback, we emphasize the importance of inter-agent interactions and propose the very first model-based offline MARL method. Our resulting algorithm, Model-based Offline Multi-Agent Proximal Policy Optimization (MOMA-PPO) generates synthetic interaction data and enables agents to converge on a strategy while fine-tuning their policies accordingly. This simple model-based solution solves the coordination-intensive offline tasks, significantly outperforming the prevalent model-free methods even under severe partial observability and with learned world models.
format Preprint
id arxiv_https___arxiv_org_abs_2305_17198
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A Model-Based Solution to the Offline Multi-Agent Reinforcement Learning Coordination Problem
Barde, Paul
Foerster, Jakob
Nowrouzezahrai, Derek
Zhang, Amy
Machine Learning
Artificial Intelligence
Multiagent Systems
Training multiple agents to coordinate is an essential problem with applications in robotics, game theory, economics, and social sciences. However, most existing Multi-Agent Reinforcement Learning (MARL) methods are online and thus impractical for real-world applications in which collecting new interactions is costly or dangerous. While these algorithms should leverage offline data when available, doing so gives rise to what we call the offline coordination problem. Specifically, we identify and formalize the strategy agreement (SA) and the strategy fine-tuning (SFT) coordination challenges, two issues at which current offline MARL algorithms fail. Concretely, we reveal that the prevalent model-free methods are severely deficient and cannot handle coordination-intensive offline multi-agent tasks in either toy or MuJoCo domains. To address this setback, we emphasize the importance of inter-agent interactions and propose the very first model-based offline MARL method. Our resulting algorithm, Model-based Offline Multi-Agent Proximal Policy Optimization (MOMA-PPO) generates synthetic interaction data and enables agents to converge on a strategy while fine-tuning their policies accordingly. This simple model-based solution solves the coordination-intensive offline tasks, significantly outperforming the prevalent model-free methods even under severe partial observability and with learned world models.
title A Model-Based Solution to the Offline Multi-Agent Reinforcement Learning Coordination Problem
topic Machine Learning
Artificial Intelligence
Multiagent Systems
url https://arxiv.org/abs/2305.17198