Evolution of cooperation with the diversity of cooperation tendencies
arXiv:2406.12647 · doi:10.1016/j.chaos.2024.115394
Abstract
The complete cooperation and the complete defection are two typical strategies considered in evolutionary games in many previous works. However, in real life, strategies of individuals are full of variety rather than only two complete ones. In this work, the diversity of strategies is introduced into the weak prisoners' dilemma game, which is measured by the diversity of the cooperation tendency. A higher diversity means more cooperation tendencies are provided. The complete cooperation strategy is the full cooperation tendency and the complete defection strategy is without any cooperation tendency. Agents with other cooperation tendencies behave as partial cooperators and as partial defectors simultaneously. The numerical simulation shows that increasing the diversity of the cooperation tendency promotes the cooperation level, not only the number of cooperators but also the average tendency over the whole population, until the diversity reaches its saturated value. Furthermore, our work points out maintaining cooperation is based on the cooperation efficiency approximating to the reward of cooperators and that the cooperation efficiency oscillates and quickly decreases to zero when cooperator clusters cannot resist the invasion of defectors. When the effect of the noise for the Femi update mechanism is considered, a higher diversity of strategies not only improves the cooperation level of the whole population but also supports the survival of more rational agents.
7 pages, 5 figures, 1 table
References in corpus (8)
- Statistical physics of human cooperation
- Social diversity and promotion of cooperation in the spatial prisoner's dilemma game
- Reward and cooperation in the spatial public goods game
- Cooperation enhanced by inhomogeneous activity of teaching for evolutionary Prisoner's Dilemma games
- Punish, but not too hard: How costly punishment spreads in the spatial public goods game
- Towards effective payoffs in the prisoner's dilemma game on scale-free networks
- Mutation enhances cooperation in direct reciprocity
- Restoring spatial cooperation with myopic agents in a three-strategy social dilemma