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Collective Motion in a Network of Self-Propelled AgentSystems

机译:自我代理网络中的集体运动系统篇

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摘要

Collective motions of animals that move towards the same direction is a conspicuous feature in nature. Such groups of animals are called a self-propelled agent (SPA) systems. Many studies have been focused on the synchronization of isolated SPA systems. In real scenarios, different SPA systems are coupled with each other forming a network of SPA systems. For example, a flock of birds and a school of fish show predator-prey relationships and different groups of birds may compete for food. In this work, we propose a general framework to study the collective motion of coupled self-propelled agent systems. Especially, we study how three different connections between SPA systems: symbiosis, predator-prey, and competition influence the synchronization of the network of SPA systems. We find that a network of SPA systems coupled with symbiosis relationship arrive at a complete synchronization as all its subsystems showing a complete synchronization; a network of SPA systems coupled by predator-prey relationship can not reach a complete synchronization and its subsystems converges to different synchronized directions; and the competitive relationship between SPA systems could increase the synchronization of each SPA systems, while the network of SPA systems coupled by competitive relationshipsshows an optimal synchronization for small coupling strength, indicating thatsmall competition promotes the synchronization of the entire system.
机译:朝同一方向移动的动物的集体运动是自然界的显着特征。这样的动物群称为自走代理(SPA)系统。许多研究集中在隔离的SPA系统的同步上。在实际情况下,不同的SPA系统相互耦合,形成SPA系统网络。例如,一群鸟和一群鱼显示出食肉动物与猎物的关系,不同种类的鸟可能争夺食物。在这项工作中,我们提出了一个总体框架来研究耦合的自推进代理系统的集体运动。特别是,我们研究了SPA系统之间的三种不同连接:共生,捕食者和被捕食者以及竞争如何影响SPA系统网络的同步。我们发现,具有共生关系的SPA系统网络实现了完全同步,因为其所有子系统都显示出完全同步。捕食者与被捕食者关系耦合的SPA系统网络无法实现完全同步,其子系统收敛到不同的同步方向。 SPA系统之间的竞争关系可以提高每个SPA系统的同步性,而SPA系统的网络由竞争关系耦合对较小的耦合强度显示出最佳同步,这表明小规模的竞争促进了整个系统的同步。

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