The Waiting-Time Distribution for Network Partitions in Cascading Failures in Power Networks
arXiv:2203.05130 · doi:10.1016/j.physa.2022.127381
Abstract
Network redundancy is one of the spatial network structural properties critical to robustness against cascading failures in power networks. The waiting-time distributions for network partitions in cascading failures explain how the spatial network structures affect the cascading behaviors. Two waiting time events associated with the first and largest network partitions are studied for cascading failures under different network redundancies. With the synthetic power networks, the waiting-time distributions of network partitions can be systematically analyzed for various network redundancies. Waiting-time distributions shift to the right accordingly when network redundancies increase. Meanwhile, the sizes of the largest partitions decrease while the numbers of them increase statistically. The realistic power networks of France, Texas, and Poland also show the same trend for waiting-time distributions.
References in corpus (5)
- Temporal Heterogeneities Increase the Prevalence of Epidemics on Evolving Networks
- Role of Network Topology in the Synchronization of Power Systems
- Vulnerability and co-susceptibility determine the size of network cascades
- Emergence of scale-free blackout sizes in power grids
- Forest Fire Model as a Supercritical Dynamic Model in Financial Systems