当前位置: X-MOL 学术Annu. Rev. Condens. Matter Phys. › 论文详情
Our official English website, www.x-mol.net, welcomes your feedback! (Note: you will need to create a separate account there.)
Antagonistic Phenomena in Network Dynamics
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2018-03-12 00:00:00 , DOI: 10.1146/annurev-conmatphys-033117-054054
Adilson E. Motter 1 , Marc Timme 2, 3
Affiliation  

Recent research on the network modeling of complex systems has led to a convenient representation of numerous natural, social, and engineered systems that are now recognized as networks of interacting parts. Such systems can exhibit a wealth of phenomena that not only cannot be anticipated from merely examining their parts, as per the textbook definition of complexity, but also challenge intuition even when considered in the context of what is now known in network science. Here, we review the recent literature on two major classes of such phenomena that have far-reaching implications: (a) antagonistic responses to changes of states or parameters and (b) coexistence of seemingly incongruous behaviors or properties—both deriving from the collective and inherently decentralized nature of the dynamics. They include effects as diverse as negative compressibility in engineered materials, rescue interactions in biological networks, negative resistance in fluid networks, and the Braess paradox occurring across transport and supply networks. They also include remote synchronization, chimera states, and the converse of symmetry breaking in brain, power-grid, and oscillator networks as well as remote control in biological and bioinspired systems. By offering a unified view of these various scenarios, we suggest that they are representative of a yet broader class of unprecedented network phenomena that ought to be revealed and explained by future research.

中文翻译:


网络动力学中的对立现象

对复杂系统的网络建模的最新研究导致了许多自然,社会和工程系统的便捷表示,这些系统现已被认为是交互部件的网络。这样的系统会表现出丰富的现象,不仅不能根据教科书对复杂性的定义仅从检查其组成部分就可以预期到,而且即使是在网络科学领域中,也可以挑战直觉。在这里,我们回顾关于此类现象的两大类的最新文献,它们具有深远的影响:(a)对状态或参数变化的拮抗反应和(b)表面上不一致的行为或属性的共存-两者均源于动力学的集体性和内在分散性。它们包括各种影响,例如工程材料中的负压缩性,生物网络中的救援相互作用,流体网络中的负阻力以及在运输和供应网络中发生的Braess悖论。它们还包括远程同步,嵌合体状态,以及大脑,电网和振荡器网络中对称性破坏的逆过程,以及生物和生物启发系统中的远程控制。通过提供对这些各种情况的统一视图,我们建议它们代表了更广泛的一类前所未有的网络现象,这些现象应在以后的研究中予以揭示和解释。

更新日期:2018-03-12
down
wechat
bug