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时间网络上的随机游走。

Random walks on temporal networks.

作者信息

Starnini Michele, Baronchelli Andrea, Barrat Alain, Pastor-Satorras Romualdo

机构信息

Departament de Física i Enginyeria Nuclear, Universitat Politècnica de Catalunya, Barcelona, Spain.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 May;85(5 Pt 2):056115. doi: 10.1103/PhysRevE.85.056115. Epub 2012 May 18.

Abstract

Many natural and artificial networks evolve in time. Nodes and connections appear and disappear at various time scales, and their dynamics has profound consequences for any processes in which they are involved. The first empirical analysis of the temporal patterns characterizing dynamic networks are still recent, so that many questions remain open. Here, we study how random walks, as a paradigm of dynamical processes, unfold on temporally evolving networks. To this aim, we use empirical dynamical networks of contacts between individuals, and characterize the fundamental quantities that impact any general process taking place upon them. Furthermore, we introduce different randomizing strategies that allow us to single out the role of the different properties of the empirical networks. We show that the random walk exploration is slower on temporal networks than it is on the aggregate projected network, even when the time is properly rescaled. In particular, we point out that a fundamental role is played by the temporal correlations between consecutive contacts present in the data. Finally, we address the consequences of the intrinsically limited duration of many real world dynamical networks. Considering the fundamental prototypical role of the random walk process, we believe that these results could help to shed light on the behavior of more complex dynamics on temporally evolving networks.

摘要

许多自然和人工网络都随时间演化。节点和连接在不同的时间尺度上出现和消失,它们的动态特性对其所涉及的任何过程都有深远影响。对表征动态网络的时间模式的首次实证分析仍为时不久,因此许多问题仍未解决。在这里,我们研究随机游走作为一种动态过程的范例,是如何在随时间演化的网络上展开的。为此,我们使用个体之间接触的实证动态网络,并表征影响在这些网络上发生的任何一般过程的基本量。此外,我们引入不同的随机化策略,使我们能够确定实证网络不同属性的作用。我们表明,即使对时间进行了适当的重新缩放,随机游走探索在时间网络上也比在聚合投影网络上更慢。特别是,我们指出数据中连续接触之间的时间相关性起着基本作用。最后,我们探讨了许多现实世界动态网络本质上有限持续时间的后果。考虑到随机游走过程的基本原型作用,我们相信这些结果有助于阐明更复杂的动态在随时间演化的网络上的行为。

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