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Effects of link-orientation methods on robustness against cascading failures in complex networks

机译:链接定向方法对复杂网络中级联故障的鲁棒性的影响

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摘要

Unidirectional and bidirectional links may coexist in many realistic networked complex systems such as the city transportation networks. Even more, for some considerations, several bidirectional links are shifted to unidirectional ones. Many link-orientation strategies might be employed, including High-to-Low, Low-to-High and Random direction determining methods, abbreviated as HTLDD, LTHDD and RDD respectively. Traffic passing through a unidirectional link is restricted to one-side direction. In real complex systems, nodes are correlated with each other. The failure from an initial node may be propagated iteratively, resulting in a large scale of failures of other nodes, called cascade phenomenon which may damage the safety or security of the networked system. Assuming that traffic load on any failed node can be redistributed to its non-failed neighbors, in this work, we try to reveal the effects of unidirectional links on network robustness against cascades. Extensive simulations have been implemented on kinds of networks including Scale-Free networks, Small-World networks, and Erdos-Renyi random networks. The results showed that all of the above three direction-determining methods decrease the robustness of the original networks against cascading failure. This work can help network designers and managers understand the robustness of network well and efficiently prevent the safety events. (C) 2016 Elsevier B.V. All rights reserved.
机译:单向和双向链接可以在许多现实的网络复杂系统(例如城市交通网络)中共存。甚至,出于某些考虑,一些双向链接转移到单向链接。可以采用许多链接定向策略,包括从高到低,从低到高和随机方向确定方法,分别缩写为HTLDD,LTHDD和RDD。通过单向链路的流量仅限于单向。在实际的复杂系统中,节点相互关联。初始节点的故障可能会反复传播,从而导致其他节点的大规模故障,称为级联现象,这可能会损害网络系统的安全性。假设可以将任何故障节点上的流量负载重新分配给其非故障邻居,在此工作中,我们尝试揭示单向链路对级联网络鲁棒性的影响。在包括无标度网络,Small-World网络和Erdos-Renyi随机网络在内的各种网络上已经实现了广泛的仿真。结果表明,上述所有三种方向确定方法均降低了原始网络抵抗级联故障的鲁棒性。这项工作可以帮助网络设计人员和管理人员很好地了解网络的健壮性,并有效地预防安全事件。 (C)2016 Elsevier B.V.保留所有权利。

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