Engineering Systems and Design, Singapore University of Technology and Design, Singapore.
Science. 2014 Mar 21;343(6177):1373-6. doi: 10.1126/science.1242063.
Studying the control properties of complex networks provides insight into how designers and engineers can influence these systems to achieve a desired behavior. Topology of a network has been shown to strongly correlate with certain control properties; here we uncover the fundamental structures that explain the basis of this correlation. We develop the control profile, a statistic that quantifies the different proportions of control-inducing structures present in a network. We find that standard random network models do not reproduce the kinds of control profiles that are observed in real-world networks. The profiles of real networks form three well-defined clusters that provide insight into the high-level organization and function of complex systems.
研究复杂网络的控制特性可以深入了解设计人员和工程师如何影响这些系统以实现预期的行为。网络的拓扑结构已被证明与某些控制特性密切相关;在这里,我们揭示了解释这种相关性基础的基本结构。我们开发了控制谱,这是一种量化网络中存在的控制诱导结构的不同比例的统计量。我们发现,标准的随机网络模型不能再现实际网络中观察到的那种控制谱。真实网络的谱形成了三个明确的聚类,深入了解了复杂系统的高级组织和功能。