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Evolutionary dynamics of N-person Hawk-Dove games

机译:N人鹰鸽子游戏的进化动力学

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摘要

In the animal world, the competition between individuals belonging to different species for a resource often requires the cooperation of several individuals in groups. This paper proposes a generalization of the Hawk-Dove Game for an arbitrary number of agents: the N-person Hawk-Dove Game. In this model, doves exemplify the cooperative behavior without intraspecies conflict, while hawks represent the aggressive behavior. In the absence of hawks, doves share the resource equally and avoid conflict, but having hawks around lead to doves escaping without fighting. Conversely, hawks fight for the resource at the cost of getting injured. Nevertheless, if doves are present in sufficient number to expel the hawks, they can aggregate to protect the resource, and thus avoid being plundered by hawks. We derive and numerically solve an exact equation for the evolution of the system in both finite and infinite well-mixed populations, finding the conditions for stable coexistence between both species. Furthermore, by varying the different parameters, we found a scenario of bifurcations that leads the system from dominating hawks and coexistence to bi-stability, multiple interior equilibria and dominating doves.
机译:在动物世界中,属于不同物种的个体之间在争夺资源方面的竞争通常需要几个个体进行群体合作。本文提出了针对任意数量的特工的Hawk-Dove游戏的一般化:N人Hawk-Dove游戏。在这种模型中,鸽子体现了合作行为而没有种内冲突,而鹰则代表了攻击行为。在没有鹰派的情况下,鸽子平等地共享资源并避免冲突,但是周围有鹰派导致鸽子逃脱而没有战斗。相反,鹰派以受伤为代价争夺资源。但是,如果鸽子的数量足以驱逐鹰,它们可以聚集起来以保护资源,从而避免被鹰掠夺。我们为有限和无限充分混合的种群中的系统演化推导并用数值方法求解,从而找到了两个物种之间稳定共存的条件。此外,通过改变不同的参数,我们发现了分叉的情况,该分叉导致系统从控制鹰派和共存转向双向稳定,多重内部平衡和控制鸽。

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