Security and Communication Networks · 2018 · 16 citations · 22 references
Cluster ComputingEngineeringLoad RedistributionNetwork RobustnessNetwork AnalysisStructural MechanicsSystem ReliabilityDynamic NetworkReliability EngineeringSystems EngineeringModeling And SimulationReliabilityComputer EngineeringStructural ReliabilityComputer ScienceAttack GraphFault-tolerant NetworkNetwork ScienceGraph TheoryReliability ModellingCascading FailuresLoad ShiftingPower System ReliabilitySurvivable NetworkTunable ProportionBroken NodesCritical Threshold
Defence against cascading failures is of great theoretical and practical significance. A novel load capacity model with a tunable proportion is proposed. We take degree and clustering coefficient into account to redistribute the loads of broken nodes. The redistribution is local, where the loads of broken nodes are allocated to their nearest neighbours. Our model has been applied on artificial networks as well as two real networks. Simulation results show that networks get more vulnerable and sensitive to intentional attacks along with the decrease of average degree. In addition, the critical threshold from collapse to intact states is affected by the tunable parameter. We can adjust the tunable parameter to get the optimal critical threshold and make the systems more robust against cascading failures.
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Collective dynamics of ‘small-world’ networks
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Emergence of Scaling in Random Networks
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Universal Behavior of Load Distribution in Scale-Free Networks
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