Cooperation in Public Goods Games over Uniform Random Hypergraphs with Game Transitions
Nankun Wei, Xiaojin Xiong, Qin Li, Minyu Feng, Attila Szolnoki

TL;DR
This paper models the evolution of cooperation in group interactions using uniform random hypergraphs with dynamic game states, revealing complex relationships between defection sensitivity and cooperation.
Contribution
It introduces a novel hypergraph-based public goods game with state transitions, capturing realistic group dynamics and strategy-environment coevolution.
Findings
Nonlinear relationship between defection sensitivity and cooperation frequency
Asymmetric effects of sensitivities in state-dependent transitions
Insights into social dilemma dynamics
Abstract
The evolution of cooperation is a central enigma in evolutionary game theory. Traditionally, the combination of pairwise networks and repeated Public Goods Games with a single state fails to adequately describe realistic group interaction scenarios. On the one hand, pairwise networks lack clear group definitions. On the other hand, a participant's decision affects not only competitors' fitness but also the state of the surrounding environment. To address this problem, we propose a Public Goods Game with game transition mechanisms based on Uniform Random Hypergraphs. In our model, game groups formed by hyperedges transition between two types of games, one with abundant public resources and the other with scarce public resources. The transition probability is closely related to the strategies of players within the hyperedges. By developing a Monte Carlo simulation framework that…
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Taxonomy
TopicsEvolutionary Game Theory and Cooperation · Game Theory and Applications · Opinion Dynamics and Social Influence
