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Dynamics of functional failures and recovery in complex road networks

机译:复杂道路网络功能故障与恢复的动态

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We propose a new framework for modeling the evolution of functional failures and recoveries in complex networks, with traffic congestion on road networks as the case study. Differently from conventional approaches, we transform the evolution of functional states into an equivalent dynamic structural process: dual-vertex splitting and coalescing embedded within the original network structure. The proposed model successfully explains traffic congestion and recovery patterns at the city scale based on high-resolution data from two megacities. Numerical analysis shows that certain network structural attributes can amplify or suppress cascading functional failures. Our approach represents a new general framework to model functional failures and recoveries in flow-based networks and allows understanding of the interplay between structure and function for flow-induced failure propagation and recovery.
机译:我们提出了一个新的框架,用于建模功能失败的演变和复杂网络中的恢复,以及道路网络上的交通拥堵作为案例研究。 与传统方法不同,我们将功能状态的演变转变为等同的动态结构过程:嵌入原始网络结构内的双顶分裂和聚结。 拟议的模型成功地基于来自两种兆瓦的高分辨率数据来解释城市规模的交通拥堵和恢复模式。 数值分析表明某些网络结构属性可以放大或抑制级联功能故障。 我们的方法代表了一个新的一般框架,用于模拟功能失败和基于流量的网络中的恢复,并允许了解结构和功能之间的相互作用,以便流动引起的故障传播和恢复。

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