Promoting collective intelligence: The advantage of temporal star-structures

Fuente: arXiv
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Main Authors: Tian, Zhenglong, Meng, Yao, Fang, Wenxuan, Li, Aming
Format: Preprint
Published: 2024
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author Tian, Zhenglong
Meng, Yao
Fang, Wenxuan
Li, Aming
author_facet Tian, Zhenglong
Meng, Yao
Fang, Wenxuan
Li, Aming
contents System structures play an essential role in the emergence of collective intelligence in many natural and engineering systems. In empirical systems, interactions among multiple agents may change over time, forming a temporal network structure, where nodes represent the system's components and links capture who interacts with whom. Recent studies report that temporal networks are more conducive to the emergence of collective cooperation compared to their aggregated static structures. However, the question of which kind of structural characteristics of temporal networks promote collective cooperation still remains elusive. Here we systematically investigate the evolution of cooperation on temporal networks with diverse structural characteristics, such as random, star, and cluster structures. We uncover that temporal networks with single-star structures which lack network clusters are more conducive to collective cooperation than other structures. This counterintuitive result cautions against the common belief that network clusters normally facilitate collective cooperation, revealing the unique advantages of temporal networks over static networks. We further propose an index to quantify the capacity of structural characteristics of temporal networks in promoting collective cooperation. Our findings pave the way for designing the optimal structure of temporal networks to favour collective cooperation.
format Preprint
id arxiv_https___arxiv_org_abs_2409_15122
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Promoting collective intelligence: The advantage of temporal star-structures
Tian, Zhenglong
Meng, Yao
Fang, Wenxuan
Li, Aming
Physics and Society
System structures play an essential role in the emergence of collective intelligence in many natural and engineering systems. In empirical systems, interactions among multiple agents may change over time, forming a temporal network structure, where nodes represent the system's components and links capture who interacts with whom. Recent studies report that temporal networks are more conducive to the emergence of collective cooperation compared to their aggregated static structures. However, the question of which kind of structural characteristics of temporal networks promote collective cooperation still remains elusive. Here we systematically investigate the evolution of cooperation on temporal networks with diverse structural characteristics, such as random, star, and cluster structures. We uncover that temporal networks with single-star structures which lack network clusters are more conducive to collective cooperation than other structures. This counterintuitive result cautions against the common belief that network clusters normally facilitate collective cooperation, revealing the unique advantages of temporal networks over static networks. We further propose an index to quantify the capacity of structural characteristics of temporal networks in promoting collective cooperation. Our findings pave the way for designing the optimal structure of temporal networks to favour collective cooperation.
title Promoting collective intelligence: The advantage of temporal star-structures
topic Physics and Society
url https://arxiv.org/abs/2409.15122