arXiv:2604.27942cs.AI2026-04被引 1

统一贝叶斯推断、博弈论与热力学的集体变分原理

A Collective Variational Principle Unifying Bayesian Inference, Game Theory, and Thermodynamics

论文配图:A Collective Variational Principle Unifying Bayesian Inference, Game Theory, and Thermodynamics
图 1 · 摘自论文原文
  • 提出博弈论自由能原理,将多智能体系统建模为局部自由能最小化
  • 证明在有限理性下,集体自由能极值点近似为纳什均衡
  • 揭示合作中的协同效应,适用于神经、生物和人工多智能体系统

集体智能在生物、物理和人工系统中无中心协调地涌现,但其统一原理仍不明。自由能原理解释了个体通过变分推断适应环境,博弈论则形式化了策略互动。本文提出博弈论自由能原理,表明执行局部自由能最小化的多智能体系统隐含实现了一个随机博弈。我们证明,在有限理性和局部信息约束下,集体自由能的驻点对应于诱导博弈的近似纳什均衡。反之,一大类合作博弈具有变分表示,其中均衡表现为联盟上的吉布斯分布,建立起贝叶斯推断与策略互动之间的桥梁。为刻画高阶效应,我们引入哈桑尼红利的自由能形式,分离出不可约的多智能体协同效应。由此得出合作的预测理论,包括感官精度与代理影响之间可检验的非单调关系。该预测在神经、生物和人工多智能体系统中均得到验证。这些结果揭示了推断、热力学与博弈均衡背后的共同变分原理。

原文摘要 · Abstract (English)

Collective intelligence emerges across biological, physical, and artificial systems without central coordination, yet a unifying principle governing such behaviour remains elusive. The Free Energy Principle explains how individual agents adapt through variational inference, while game theory formalises strategic interactions. Here we introduce the Game-Theoretic Free Energy Principle, a unified framework showing that multi-agent systems performing local free-energy minimisation implicitly implement a stochastic game. We prove that, under bounded rationality and local information constraints, stationary points of collective free energy correspond to approximate Nash equilibria of an induced game. Conversely, a broad class of cooperative games admits a variational representation in which equilibria arise as Gibbs distributions over coalitions, establishing a bridge between Bayesian inference and strategic interaction. To characterise higher-order effects, we introduce a free-energy formulation of the Harsanyi dividend, isolating irreducible multi-agent synergy. This yields a predictive theory of cooperation, including a falsifiable non-monotonic relationship between sensory precision and agent influence. We validate this prediction across neural, biological, and artificial multi-agent systems. These results identify a common variational principle underlying inference, thermodynamics, and game-theoretic equilibrium.

变分原理博弈论自由能多智能体

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