Niels Bohr Institute, University of Copenhagen, Blegdamsvej 17, DK-2100 Copenhagen, Denmark.
Phys Rev Lett. 2012 Oct 19;109(16):168701. doi: 10.1103/PhysRevLett.109.168701. Epub 2012 Oct 15.
In communication networks, structure and dynamics are tightly coupled. The structure controls the flow of information and is itself shaped by the dynamical process of information exchanged between nodes. In order to reconcile structure and dynamics, a generic model, based on the local interaction between nodes, is considered for the communication in large social networks. In agreement with data from a large human organization, we show that the flow is non-Markovian and controlled by the temporal limitations of individuals. We confirm the versatility of our model by predicting simultaneously the degree-dependent node activity, the balance between information input and output of nodes, and the degree distribution. Finally, we quantify the limitations to network analysis when it is based on data sampled over a finite period of time.
在通信网络中,结构和动态紧密耦合。结构控制信息的流动,而结构本身又受到节点之间信息交换的动态过程的影响。为了协调结构和动态,考虑了一种基于节点之间局部相互作用的通用模型,用于大型社交网络中的通信。与来自大型人类组织的数据一致,我们表明,流是非马尔可夫的,并且受到个体时间限制的控制。我们通过同时预测与节点活动相关的节点度、节点输入和输出之间的平衡以及度分布,来验证我们模型的通用性。最后,我们量化了当基于有限时间内采样的数据进行网络分析时的局限性。