International audienceMany networks such as the Internet have been found to possess scale-free and small-world network properties reflected by power-law distributions. Scale-free properties evolve in large complex networks through self-organizing processes and, more specifically, preferential attachment. New nodes in a network tend to attach to other vertices that are already well-connected. Because traffic is routed mainly through a few highly connected and concentrated vertices, the diameter of the network is small in comparison to other network structures, and movement through the network is therefore efficient. At the same time, this efficiency feature puts scale-free networks at risk for becoming disconnected or significantly disrupted...
In recent years, scale expansion and complication of anetwork has been rapidly progressing [10]. Amo...
A variety of different social, natural and technological systems can be described by the same mathem...
Scale-free networks are abundant both in nature (e.g. protein interactions and social networks) and ...
International audienceMany networks such as the Internet have been found to possess scale-free and s...
International audienceMany networks such as the Internet have been found to possess scale-free and s...
International audienceMany networks such as the Internet have been found to possess scale-free and s...
Many networks such as the Internet have been found to possess scale-free and small-world network pro...
Many networks such as the Internet have been found to possess scale-free and small-world network pro...
?Small-world networks? have a high degree of local clustering or cliqueness, like a regular lattice ...
Scale-free networks are a recently developed approach to modeling the interactions found in complex ...
A variety of systems in nature can be described by complex networks and the most important statistic...
The node degrees of large real-world networks often follow a power-law distribution. Such scale-free...
The Scale-Free Networks model is considered a significant discovery because it has been successfully...
It has recently been recognized that a large num-ber of systems are organized into structures best d...
We examine the robustness of critical infrastructure networks, specifically aspects which relate to ...
In recent years, scale expansion and complication of anetwork has been rapidly progressing [10]. Amo...
A variety of different social, natural and technological systems can be described by the same mathem...
Scale-free networks are abundant both in nature (e.g. protein interactions and social networks) and ...
International audienceMany networks such as the Internet have been found to possess scale-free and s...
International audienceMany networks such as the Internet have been found to possess scale-free and s...
International audienceMany networks such as the Internet have been found to possess scale-free and s...
Many networks such as the Internet have been found to possess scale-free and small-world network pro...
Many networks such as the Internet have been found to possess scale-free and small-world network pro...
?Small-world networks? have a high degree of local clustering or cliqueness, like a regular lattice ...
Scale-free networks are a recently developed approach to modeling the interactions found in complex ...
A variety of systems in nature can be described by complex networks and the most important statistic...
The node degrees of large real-world networks often follow a power-law distribution. Such scale-free...
The Scale-Free Networks model is considered a significant discovery because it has been successfully...
It has recently been recognized that a large num-ber of systems are organized into structures best d...
We examine the robustness of critical infrastructure networks, specifically aspects which relate to ...
In recent years, scale expansion and complication of anetwork has been rapidly progressing [10]. Amo...
A variety of different social, natural and technological systems can be described by the same mathem...
Scale-free networks are abundant both in nature (e.g. protein interactions and social networks) and ...