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Selfish punishment with avoiding mechanism can alleviate both first-order and second-order social dilemma

机译:避免机制的自私惩罚可以减轻一阶和二阶社交困境

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Punishment, especially selfish punishment, has recently been identified as a potent promoter in sustaining or even enhancing the cooperation among unrelated individuals. However, without other key mechanisms, the first-order social dilemma and second-order social dilemma are still two enduring conundrums in biology and the social sciences even with the presence of punishment. In the present study, we investigate a spatial evolutionary four-strategy prisoner's dilemma game model with avoiding mechanism, where the four strategies are cooperation, defection, altruistic and selfish punishment By introducing the low level of random mutation of strategies, we demonstrate that the presence of selfish punishment with avoiding mechanism can alleviate the two kinds of social dilemmas for various parametrizations. In addition, we propose an extended pair approximation method, whose solutions can essentially estimate the dynamical behaviors and final evolutionary frequencies of the four strategies. At last, considering the analogy between our model and the classical Lotka-Volterra system, we introduce interaction webs based on the spatial replicator dynamics and the transformed payoff matrix to qualitatively characterize the emergent co-exist strategy phases, and its validity are supported by extensive simulations. (C) 2014 Elsevier Ltd. All rights reserved.
机译:惩罚,特别是自私的惩罚,最近被确定为持续甚至加强无关个人之间的合作的有效推动者。然而,如果没有其他关键机制,即使存在惩罚,一阶社交困境和二阶社交困境也仍然是生物学和社会科学中的两个持久的难题。在本研究中,我们通过避免机制调查空间进化的四策略囚犯的困境游戏模型,通过引入策略的低水平随机突变,四项策略是合作,叛逃,利他制度和自私惩罚,我们证明存在利用避免机制的自私惩罚可以减轻各种参数化的两种社交困境。此外,我们提出了一种扩展的对近似方法,其解决方案可以基本上估计四种策略的动态行为和最终进化频率。最后,考虑到我们的模型与经典Lotka-Volterra系统之间的类比,我们将基于空间复制器动态和变换的收益矩阵引入互动幅度,以定性表征紧急共存战略阶段,其有效性得到广泛的支持模拟。 (c)2014年elestvier有限公司保留所有权利。

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