Department of Civil and Environmental Engineering, University of Missouri, Columbia, Missouri, United States of America.
PLoS One. 2012;7(7):e39788. doi: 10.1371/journal.pone.0039788. Epub 2012 Jul 10.
Network robustness refers to a network's resilience to stress or damage. Given that most networks are inherently dynamic, with changing topology, loads, and operational states, their robustness is also likely subject to change. However, in most analyses of network structure, it is assumed that interaction among nodes has no effect on robustness. To investigate the hypothesis that network robustness is not sensitive or elastic to the level of interaction (or flow) among network nodes, this paper explores the impacts of network disruption, namely arc deletion, over a temporal sequence of observed nodal interactions for a large Internet backbone system. In particular, a mathematical programming approach is used to identify exact bounds on robustness to arc deletion for each epoch of nodal interaction. Elasticity of the identified bounds relative to the magnitude of arc deletion is assessed. Results indicate that system robustness can be highly elastic to spatial and temporal variations in nodal interactions within complex systems. Further, the presence of this elasticity provides evidence that a failure to account for nodal interaction can confound characterizations of complex networked systems.
网络鲁棒性是指网络对压力或破坏的弹性。鉴于大多数网络本质上是动态的,具有不断变化的拓扑结构、负载和运行状态,它们的鲁棒性也可能发生变化。然而,在大多数网络结构分析中,都假设节点之间的相互作用对鲁棒性没有影响。为了研究网络鲁棒性对网络节点之间相互作用(或流量)水平不敏感或无弹性的假设,本文探讨了网络中断(即弧删除)对大型互联网骨干系统观测到的节点相互作用的时间序列的影响。具体来说,使用数学规划方法为每个节点相互作用的时期确定对弧删除的鲁棒性的确切边界。评估了所确定边界相对于弧删除幅度的弹性。结果表明,在复杂系统中,节点相互作用的空间和时间变化可以使系统的鲁棒性具有高度的弹性。此外,这种弹性的存在为未能考虑节点相互作用可能会混淆复杂网络系统的特征提供了证据。