Abstract
AbstractMany realistic systems such as infrastructures are characterized by spatial structure and anisotropic alignment. Here we propose and study a model for dealing with such characteristics by introducing a parameter that controls the strength of the anisotropy in the spatial network. This parameter is added to an existing isotropic model used to describe networks under spatial constraints, thus generalizing the spatial model to take into account both spatial and anisotropic features. We study the resilience of such networks by using a percolation process and find that anisotropy has a negative impact on a network’s robustness. In addition, our results suggest that the anisotropy in this model does not affect the critical exponent of the correlation length,ν, which remains the same as the knownνin 2D isotropic lattices.
Funder
Israel Science Foundation
DTRA
NSF
BSF
China-Israel Science Foundation
Subject
General Physics and Astronomy,Mathematical Physics,Modeling and Simulation,Statistics and Probability,Statistical and Nonlinear Physics
Cited by
4 articles.
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