Multi-scale analysis of the European airspace using network community detection
arXiv:1306.3769 · doi:10.1371/journal.pone.0094414
Abstract
We show that the European airspace can be represented as a multi-scale traffic network whose nodes are airports, sectors, or navigation points and links are defined and weighted according to the traffic of flights between the nodes. By using a unique database of the air traffic in the European airspace, we investigate the architecture of these networks with a special emphasis on their community structure. We propose that unsupervised network community detection algorithms can be used to monitor the current use of the airspaces and improve it by guiding the design of new ones. Specifically, we compare the performance of three community detection algorithms, also by using a null model which takes into account the spatial distance between nodes, and we discuss their ability to find communities that could be used to define new control units of the airspace.
22 pages, 14 figures
References in corpus (9)
- Fast unfolding of communities in large networks
- Natural Scales in Geographical Patterns
- Maps of random walks on complex networks reveal community structure
- Resolution limit in community detection
- Prediction and predictability of global epidemics: the role of the airline transportation network
- Finding statistically significant communities in networks
- Modelling the Air Transport with Complex Networks: a short review
- The effects of spatial constraints on the evolution of weighted complex networks
- Multi-scale Modularity in Complex Networks
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