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具有有限理性的社会生态系统中无标度特征的出现。

Emergence of scale-free characteristics in socio-ecological systems with bounded rationality.

作者信息

Kasthurirathna Dharshana, Piraveenan Mahendra

机构信息

Centre for Complex Systems Research, Faculty of Engineering and IT, The University of Sydney, NSW 2006, Australia.

出版信息

Sci Rep. 2015 Jun 11;5:10448. doi: 10.1038/srep10448.

Abstract

Socio-ecological systems are increasingly modelled by games played on complex networks. While the concept of Nash equilibrium assumes perfect rationality, in reality players display heterogeneous bounded rationality. Here we present a topological model of bounded rationality in socio-ecological systems, using the rationality parameter of the Quantal Response Equilibrium. We argue that system rationality could be measured by the average Kullback--Leibler divergence between Nash and Quantal Response Equilibria, and that the convergence towards Nash equilibria on average corresponds to increased system rationality. Using this model, we show that when a randomly connected socio-ecological system is topologically optimised to converge towards Nash equilibria, scale-free and small world features emerge. Therefore, optimising system rationality is an evolutionary reason for the emergence of scale-free and small-world features in socio-ecological systems. Further, we show that in games where multiple equilibria are possible, the correlation between the scale-freeness of the system and the fraction of links with multiple equilibria goes through a rapid transition when the average system rationality increases. Our results explain the influence of the topological structure of socio-ecological systems in shaping their collective cognitive behaviour, and provide an explanation for the prevalence of scale-free and small-world characteristics in such systems.

摘要

社会生态系统越来越多地通过在复杂网络上进行的博弈来建模。虽然纳什均衡的概念假设了完美理性,但在现实中参与者表现出异质性的有限理性。在这里,我们使用量子响应均衡的理性参数,提出了一个社会生态系统中有限理性的拓扑模型。我们认为,系统理性可以通过纳什均衡和量子响应均衡之间的平均库尔贝克-莱布勒散度来衡量,并且平均而言向纳什均衡的收敛对应于系统理性的提高。使用这个模型,我们表明,当一个随机连接的社会生态系统在拓扑上进行优化以趋向于纳什均衡时,无标度和小世界特征就会出现。因此,优化系统理性是社会生态系统中无标度和小世界特征出现的一个进化原因。此外,我们表明,在可能存在多个均衡的博弈中,当平均系统理性增加时,系统的无标度性与具有多个均衡的链接比例之间的相关性会经历快速转变。我们的结果解释了社会生态系统的拓扑结构在塑造其集体认知行为方面的影响,并为这类系统中无标度和小世界特征的普遍存在提供了解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f9/4464151/2bdf5f277058/srep10448-f1.jpg

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