Structural robustness of scale-free networks against overload failures.
Explore this paper's citation graph
Summary
It is shown that the structural robustness of scale-free networks against overload failures induced by loads exceeding the node capacity is not affected by degree-degree correlations, although assortative mixing makes networks robust in both senses of W(c) and f(c).
- Type
- article
- Published
- 2013-07-08
- Cited by
- 14
- References
- 38
- Access
- Open access
- OpenAlex
- https://openalex.org/W2070717823
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11972786
Keywords
Robustness (evolution), Scale-free network, Cascading failure, Complex network, Computer science
References
- Lectures on Complex Networks
- Random walks on complex networks.
- Dynamical Processes on Complex Networks
- Transient dynamics increasing network vulnerability to cascading failures.
- Robustness of a Network of Networks
- Extreme events on complex networks
- Catastrophic cascade of failures in interdependent networks
- Extreme events and event size fluctuations in biased random walks on networks.
- Critical phenomena in complex networks
- Model for cascading failures in complex networks.
- Scaling breakdown in flow fluctuations on complex networks.
- Instability of scale-free networks under node-breaking avalanches
- Robustness of networks against fluctuation-induced cascading failures.
- Breakdown of the internet under intentional attack.
- Percolation on correlated networks.
- Mitigation strategies on scale-free networks against cascading failures
- Mixing patterns in networks.
- Assortative mixing in networks.
- Assortativity Decreases the Robustness of Interdependent Networks
- Resilience of the internet to random breakdowns
Cited by
- Degree correlation in scale-free graphs
- Network robustness and random processes
- Identification of important interacting proteins (IIPs) in Plasmodium falciparum using large-scale interaction network analysis and in-silico knock-out studies
- Optimization and resilience of complex supply-demand networks
- Network fragility to overload failures: influence of the scale-free property
- A study of the temporal robustness of the growing global container-shipping network
- Robustness of non-interdependent and interdependent networks against dependent and adaptive attacks
- Robustness of complex networks to cascading failures induced by Poisson fluctuating loads
- Fractal and Small-World Networks Formed by Self-Organized Critical Dynamics
- Analysis of the spatial cascading effect in networks
- Criticality, Connectivity, and Neural Disorder: A Multifaceted Approach to Neural Computation
- Transcriptional Regulatory Network Topology with Applications to Bio-inspired Networking: A Survey
- Biased random walkers and extreme events on the edges of complex networks.
- Cascading failure in networks with dynamical behavior against multi-node removal
Related papers
- Nonpreferential Attachment Leads to Scale-Free or Not
- Ordinal Preferential Attachment: A Self-Organizing Principle Generating Dense Scale-Free Networks
- Preferential attachment alone is not sufficient to generate scale free random networks
- Evolution of network from node division and generation
- Evolving Scale-Free Network Model
- The Affection of Exponential Growth on Scale-free Network
- Modeling Clustered Scale-free Networks by Applying Various Preferential Attachment Patterns
- Scale-free networks via attaching to random neighbors
- Cascading failure model for improving the robustness of scale-free networks