Even though existence of non-convergent evolution of the states of populations in ecological and evolutionary contexts is an undeniable fact, insightful game-theoretic interpretations of such outcomes are scarce in the literature of evolutionary game theory. As a proof-of-concept, we tap into the information-theoretic concept of relative entropy in order to construct a game-theoretic interpretation for periodic orbits in a wide class of deterministic discrete-time evolutionary game dynamics, primarily investigating the two-player two-strategy case. Effectively, we present a consistent generalization of the evolutionarily stable strategy -- the cornerstone of the evolutionary game theory -- and aptly term the generalized concept: information stable orbit. The information stable orbit captures the essence of the evolutionarily stable strategy in that it compares the total payoff obtained against an evolving mutant with the total payoff that the mutant gets while playing against itself. Furthermore, we discuss the connection of the information stable orbit with the dynamical stability of the corresponding periodic orbit.
翻译:尽管在生态和进化背景下人口状况的非一致演变是一个不可否认的事实,但在进化游戏理论的文献中,对这些结果的有见地的游戏理论解释却很少见。作为概念的证明,我们利用相对环流的信息理论概念,以便在一系列广泛的确定性离散时间进化游戏动态中,为周期轨道建立一个游戏理论解释,主要是调查两者进化两战略案例。实际上,我们对进化稳定战略 -- -- 进化游戏理论的基石 -- -- 进行了一致的概括化,并恰当地使用了通用概念:信息稳定轨道。信息稳定轨道捕捉了进化稳定战略的精髓,因为它把对变化变种的总报酬与变种在自相竞争时获得的总报酬进行比较。此外,我们讨论了信息稳定轨道与相应周期轨道的动态稳定性之间的联系。</s>