摘要
We propose a model of edge-coupled interdependent networks with directed dependency links(EINDDLs)and develop the theoretical analysis framework of this model based on the self-consistent probabilities method.The phase transition behaviors and parameter thresholds of this model under random attacks are analyzed theoretically on both random regular(RR)networks and Erd¨os-Renyi(ER)networks,and computer simulations are performed to verify the results.In this EINDDL model,a fractionβof connectivity links within network B depends on network A and a fraction(1-β)of connectivity links within network A depends on network B.It is found that randomly removing a fraction(1-p)of connectivity links in network A at the initial state,network A exhibits different types of phase transitions(first order,second order and hybrid).Network B is rarely affected by cascading failure whenβis small,and network B will gradually converge from the first-order to the second-order phase transition asβincreases.We present the critical values ofβfor the phase change process of networks A and B,and give the critical values of p andβfor network B at the critical point of collapse.Furthermore,a cascading prevention strategy is proposed.The findings are of great significance for understanding the robustness of EINDDLs.
作者
高彦丽
于海波
周杰
周银座
陈世明
Yan-Li Gao;Hai-Bo Yu;Jie Zhou;Yin-Zuo Zhou;Shi-Ming Chen(School of Electrical and Automation Engineering,East China JiaoTong University,Nanchang 330013,China;School of Physics and Electronic Science,East China Normal University,Shanghai 200241,China;Alibaba Research Center for Complexity Sciences,Hangzhou Normal University,Hangzhou 311121,China)
基金
the National Natural Science Foundation of China(Grant Nos.61973118,51741902,11761033,12075088,and 11835003)
Project in JiangXi Province Department of Science and Technology(Grant Nos.20212BBE51010 and 20182BCB22009)
the Natural Science Foundation of Zhejiang Province(Grant No.Y22F035316)。