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Networking effects on cooperation in evolutionary N-person threshold games

机译:关于进化N人阈博弈的合作网络影响

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Evolutionary game theory has been extensively employed to study the evolution of cooperation in human society. Many previous studies have shown that public cooperation can emerge from positive interactions and social diversity in structured populations. Here we study the evolution of cooperation under N-person interactions, where a minimum threshold of individuals must cooperate to produce public benefits. This is a very common phenomenon in teamwork, especially given the limited capacity of individuals. In this paper, we first present two scenarios of individual contribution mechanisms under an N-person threshold game to characterize such real-world situations. Then, we analyze the stable equilibrium for both scenarios of threshold games in well-mixed populations. Finally, we carry out simulations on three types of complex networks to evaluate the effects of both individual interactions and social diversity on the evolution of cooperation in structured populations. The analytical and simulation results in this paper offer a new insight into the evolution of cooperation in the face of threshold.
机译:进化博弈论已广泛用于研究人类社会合作的演变。许多以前的研究表明,公共合作可以从结构化人口中的积极互动和社会多样性中出现。在这里,我们研究了N-Person互动下合作的演变,其中最低的个人门槛必须合作,以产生公共利益。这是团队合作中的一个非常普遍的现象,特别是鉴于个人的能力有限。在本文中,我们首先在N个人门槛游戏下提出了两种个人贡献机制的情景,以表征这种现实世界的情况。然后,我们分析了混合群体的阈值游戏的两种情况的稳定均衡。最后,我们对三种类型的复杂网络进行了模拟,以评估个人互动和社会多样性对结构性群体合作演变的影响。本文的分析和仿真结果提供了对面对阈值的合作演变的新见解。

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