复制因子方程
进化动力学
成对比较
计算机科学
公共物品游戏
公共物品
动力学(音乐)
博弈论
社会动力
理论计算机科学
不断发展的网络
基础(证据)
社交网络(社会语言学)
复杂网络
工作(物理)
强互惠
数理经济学
复杂系统
社会制度
进化博弈论
微观经济学
人工智能
群(周期表)
社会网络分析
管理科学
社会团体
网络动力学
社会困境
领域(数学)
网络科学
生物进化
社会关系
社会影响力
网络结构
数据科学
进化计算
系统动力学
作者
Unai Alvarez-Rodriguez,Federico Battiston,Guilherme Ferraz de Arruda,Yamir Moreno,Matjaž Perc,Vito Latora
标识
DOI:10.1038/s41562-020-01024-1
摘要
We live and cooperate in networks. However, links in networks only allow for pairwise interactions, thus making the framework suitable for dyadic games, but not for games that are played in groups of more than two players. Here, we study the evolutionary dynamics of a public goods game in social systems with higher-order interactions. First, we show that the game on uniform hypergraphs corresponds to the replicator dynamics in the well-mixed limit, providing a formal theoretical foundation to study cooperation in networked groups. Secondly, we unveil how the presence of hubs and the coexistence of interactions in groups of different sizes affects the evolution of cooperation. Finally, we apply the proposed framework to extract the actual dependence of the synergy factor on the size of a group from real-world collaboration data in science and technology. Our work provides a way to implement informed actions to boost cooperation in social groups.
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