Efficient Response to Cascading Disaster Spreading
Lubos Buzna, Karsten Peters, Hendrik Ammoser, Christian Kuehnert, Dirk Helbing
Abstract
We study the effectiveness of recovery strategies for a dynamic model of failure spreading in networks. These strategies control the distribution of resources based on information about the current network state and network topology. In order to assess their success, we have performed a series of simulation experiments. The considered parameters of these experiments are the network topology, the response time delay and the overall disposition of resources. Our investigations are focused on the comparison of strategies for different scenarios and the determination of the most appropriate strategy. The importance of prompt response and the minimum sufficient quantity of resources are discussed as well.
Create a lesson
Related papers
Is higher-order physics different?
Pablo Villegas, Sandro Meloni
The dynamics of early transoceanic voyages: A resource-coupled model of crew health and survival
Nuno Crokidakis
When higher-order interactions matter: reducibility, parsimony, and microscopic organization
Alex Arenas, Federico Battiston, Andrea Gabrielli
Geography as the Organizing Grammar of Geospatial Models
Rajiv Ranjan, Shashank Tamaskar
Towards stratified sampling for redistricting plans
Zijian Wang, Gregory J. Herschlag, Joon-Hyeok Yim et al.
BanglaShop-CRS: A User-Centric Bangla Dataset for Conversational Recommendation
Tabia Tanzin Prama, Christopher M. Danforth, Peter Sheridan Dodds