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Understanding Cooperative Behavior Based on the Coevolution of Game Strategy and Link Weight

机译:了解基于游戏策略的共同策略和链接重量的合作行为

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摘要

In reality, the dependency relationship among individuals is heterogeneous and time-varying. Based on this fact, we present a new mechanism of coevolution of game strategy and link weight when analyzing the evolution of cooperation. In detail, we model the population on a regular network, on which the relationship between players is depicted by a weighted link, and prisoner’s dilemma has been applied to describe the interaction of players. Further, the impact of this mechanism on the cooperative behavior has been outlined. By conducting large-scale Monte Carlo simulations, we can easily draw a conclusion that this mechanism can promote cooperation efficiently. Compared with the traditional case, when the temptation of defection b is large, the fraction of cooperation is still able to keep in a high level. With a comprehensive examination of the distribution of stable link weight, it is evident that the coevolution mechanism would deviate the initial distribution. This mechanism induces the heterogeneity of players, which enhances the fraction of cooperation. Numerical simulations also indicate that an intermediate value of Δ/ δ warrants an optimal resolution of prisoner’s dilemma. The mechanism of coevolution of game strategy and link weight has a practical significance and will provide new insight for the further research.
机译:实际上,个人之间的依赖关系是异构和时变的。基于这一事实,在分析合作演变时,我们展示了一种新的游戏战略和联系重量的协调机制。详细说明,我们在常规网络上模拟了普通网络的人口,其中玩家之间的关系被加权链接描绘,并且囚犯的困境已经应用于描述球员的互动。此外,已经概述了这种机制对合作行为的影响。通过进行大规模的蒙特卡罗模拟,我们可以轻松得出结论,即这种机制可以有效地促进合作。与传统案例相比,当叛逃B的诱惑很大时,合作的一小部分仍然能够保持高水平。随着综合检查稳定的链路重量的分布,显然是群体机制将偏离初始分布。这种机制诱导球员的异质性,这增强了合作的一小部分。数值模拟还表明δ/δ的中间值认证了囚犯困境的最佳分辨率。游戏策略和链接重量的协调机制具有实际意义,并将为进一步研究提供新的洞察力。

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