Networked structures arise in a wide array of different contexts such as technological and transportation infrastructures, social phenomena, and biological systems. These highly interconnected systems have recently been the focus of a great deal of attention that has uncovered and characterized their topological complexity. Along with a complex topological structure, real networks display a large heterogeneity in the capacity and intensity of the connections. These features, however, have mainly not been considered in past studies where links are usually represented as binary states, i.e., either present or absent. Here, we study the scientific collaboration network and the world-wide air-transportation network, which are representative exa...
Most of the transportation networks are not determined by their topology only but also by the traffi...
Most of the transportation networks are not determined by their topology only but also by the traffi...
doi:10.1088/1742-5468/2006/04/P04006 Abstract. In real networks complex topological features are oft...
Networked structures arise in a wide array of different contexts such as technological and transport...
Networked structures arise in a wide array of different contexts such as technological and transport...
Proceedings of the conference \"Complex networks: structure, function and processes\", Kolkata (Sate...
Proceedings of the conference \"Complex networks: structure, function and processes\", Kolkata (Sate...
We report a study of the correlations among topological, weighted and spatial properties of large in...
We review the main tools which allow for the statistical characterization of weighted networks. We t...
We review the main tools which allow for the statistical characterization of weighted networks. We t...
In many scientific applications, it is common to use binary (i.e., unweighted) edges in the study of...
In real networks complex topological features are often associated with a diversity of interactions ...
During the last decade, significant efforts have been made toward improving our understanding of the...
We develop a statistical theory to characterize correlations in weighted networks. We define the app...
<div><p>The statistical mechanical approach to complex networks is the dominant paradigm in describi...
Most of the transportation networks are not determined by their topology only but also by the traffi...
Most of the transportation networks are not determined by their topology only but also by the traffi...
doi:10.1088/1742-5468/2006/04/P04006 Abstract. In real networks complex topological features are oft...
Networked structures arise in a wide array of different contexts such as technological and transport...
Networked structures arise in a wide array of different contexts such as technological and transport...
Proceedings of the conference \"Complex networks: structure, function and processes\", Kolkata (Sate...
Proceedings of the conference \"Complex networks: structure, function and processes\", Kolkata (Sate...
We report a study of the correlations among topological, weighted and spatial properties of large in...
We review the main tools which allow for the statistical characterization of weighted networks. We t...
We review the main tools which allow for the statistical characterization of weighted networks. We t...
In many scientific applications, it is common to use binary (i.e., unweighted) edges in the study of...
In real networks complex topological features are often associated with a diversity of interactions ...
During the last decade, significant efforts have been made toward improving our understanding of the...
We develop a statistical theory to characterize correlations in weighted networks. We define the app...
<div><p>The statistical mechanical approach to complex networks is the dominant paradigm in describi...
Most of the transportation networks are not determined by their topology only but also by the traffi...
Most of the transportation networks are not determined by their topology only but also by the traffi...
doi:10.1088/1742-5468/2006/04/P04006 Abstract. In real networks complex topological features are oft...