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NfgTransformer: Equivariant Representation Learning for Normal-form Games
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NfgTransformer: Equivariant Representation Learning for Normal-form Games
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Normal-form games (NFGs) are the fundamental model of strategic interaction. We study their representation using neural networks. We describe the inherent equivariance of NFGs -- any permutation of strategies describes an equivalent game -- as well as the challenges this poses for representation learning. We then propose the NfgTransformer architecture that leverages this equivariance, leading to state-of-the-art performance in a range of game-theoretic tasks including equilibrium-solving, deviation gain estimation and ranking, with a common approach to NFG representation. We show that the resulting model is interpretable and versatile, paving the way towards deep learning systems capable of game-theoretic reasoning when interacting with humans and with each other.
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Cited by 1 Pith paper
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Strategy, Not Payoffs: A Behavioural Embedding of Normal-Form Games
A two-feature game embedding (Nash entropy and best-response switching) predicts cross-game transfer of fine-tuned LLMs on held-out games, outperforming game identity and published structural embeddings.
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