Turbocharging Solution Concepts: Solving NEs, CEs and CCEs with Neural Equilibrium Solvers
October 17, 2022 ยท Declared Dead ยท ๐ Neural Information Processing Systems
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Authors
Luke Marris, Ian Gemp, Thomas Anthony, Andrea Tacchetti, Siqi Liu, Karl Tuyls
arXiv ID
2210.09257
Category
cs.LG: Machine Learning
Cross-listed
cs.AI,
cs.GT,
cs.MA
Citations
16
Venue
Neural Information Processing Systems
Last Checked
3 months ago
Abstract
Solution concepts such as Nash Equilibria, Correlated Equilibria, and Coarse Correlated Equilibria are useful components for many multiagent machine learning algorithms. Unfortunately, solving a normal-form game could take prohibitive or non-deterministic time to converge, and could fail. We introduce the Neural Equilibrium Solver which utilizes a special equivariant neural network architecture to approximately solve the space of all games of fixed shape, buying speed and determinism. We define a flexible equilibrium selection framework, that is capable of uniquely selecting an equilibrium that minimizes relative entropy, or maximizes welfare. The network is trained without needing to generate any supervised training data. We show remarkable zero-shot generalization to larger games. We argue that such a network is a powerful component for many possible multiagent algorithms.
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