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网络几何布朗运动中的合作动态

Cooperation dynamics in networked geometric Brownian motion.

作者信息

Stojkoski Viktor, Utkovski Zoran, Basnarkov Lasko, Kocarev Ljupco

机构信息

Academy of Sciences and Arts of the Republic of North Macedonia, P.O. Box 428, 1000 Skopje, North Macedonia.

Fraunhofer Heinrich Hertz Institute, Einsteinufer 37, 10587, Berlin, Germany.

出版信息

Phys Rev E. 2019 Jun;99(6-1):062312. doi: 10.1103/PhysRevE.99.062312.

Abstract

Recent works suggest that pooling and sharing may constitute a fundamental mechanism for the evolution of cooperation in well-mixed fluctuating environments. The rationale is that, by reducing the amplitude of fluctuations, pooling and sharing increases the steady-state growth rate at which individuals self-reproduce. However, in reality interactions are seldom realized in a well-mixed structure, and the underlying topology is in general described by a complex network. Motivated by this observation, we investigate the role of the network structure on the cooperative dynamics in fluctuating environments, by developing a model for networked pooling and sharing of resources undergoing a geometric Brownian motion. The study reveals that, while in general cooperation increases the individual steady state growth rates (i.e., is evolutionary advantageous), the interplay with the network structure may yield large discrepancies in the observed individual resource endowments. We comment possible biological and social implications and discuss relations to econophysics.

摘要

近期的研究表明,集中与共享可能构成了在充分混合的波动环境中合作进化的一种基本机制。其基本原理是,通过降低波动幅度,集中与共享提高了个体自我繁殖的稳态增长率。然而,在现实中,互动很少在充分混合的结构中实现,其潜在拓扑结构通常由复杂网络描述。受此观察结果的启发,我们通过建立一个资源进行几何布朗运动的网络化集中与共享模型,研究网络结构在波动环境中对合作动态的作用。研究表明,虽然一般来说合作会提高个体稳态增长率(即具有进化优势),但与网络结构的相互作用可能会导致观察到的个体资源禀赋出现巨大差异。我们评论了可能的生物学和社会意义,并讨论了与经济物理学的关系。

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