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On the coexistence of cooperators,defectors and conditional cooperators in the multiplayer iterated Prisoner's Dilemma.

机译:关于多人迭代囚徒困境中合作者,偏转者和条件合作者的共存。

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Recent experimental evidence [Gruji? Fosco, Araujo, Cuesta, Sánchez, 2010. Social experiments in the mesoscale: humans playing a spatial Prisoner's dilemma. PLoS ONE 5, e13749] on the spatial Prisoner's Dilemma suggests that players choosing to cooperate or not on the basis of their previous action and the actions of their neighbors coexist with steady defectors and cooperators. We here study the coexistence of these three strategies in the multiplayer iterated Prisoner's Dilemma by means of the replicator dynamics. We consider groups with n=2, 3, 4 and 5 players and compute the payoffs to every type of player as the limit of a Markov chain where the transition probabilities between actions are found from the corresponding strategies. We show that for group sizes up to n=4 there exists an interior point in which the three strategies coexist, the corresponding basin of attraction decreasing with increasing number of players, whereas we have not been able to locate such a point for n=5. We analytically show that in the limit n --> ∞ no interior points can arise. We conclude by discussing the implications of this theoretical approach on the behavior observed in experiments.
机译:最近的实验证据[Gruji? Fosco,Araujo,Cuesta,Sánchez,2010年。中尺度的社会实验:人类在空间囚徒困境中扮演角色。 《空间囚徒困境》中的PLoS ONE 5,[e13749]建议玩家根据其先前的行动和邻居的行动与稳定的叛逃者和合作者共存,选择是否合作。我们在这里通过复制者动力学研究这三种策略在多人迭代囚徒困境中的共存。我们考虑具有n = 2、3、4和5个参与者的组,并计算每种类型的参与者的收益作为马尔可夫链的极限,在马尔可夫链中可以从相应的策略中找到动作之间的转移概率。我们表明,对于不超过n = 4的小组规模,存在三种策略共存的内部点,随着玩家数量的增加,相应的吸引力范围减小,而对于n = 5,我们无法找到这样的点。我们通过分析表明,在极限n->∞内,不会出现内部点。最后,我们讨论了这种理论方法对实验中观察到的行为的影响。

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