This is a research report that is part of a Chapter of a PhD thesis. An updated version will be available soon.International audienceThe Random Geometric Graph (RGG) is a random graph model for network data with an underlying spatial representation. Geometry endows RGGs with a rich dependence structure and often leads to desirable properties of real-world networks such as the small-world phenomenon and clustering. Originally introduced to model wireless communication networks, RGGs are now very popular with applications ranging from network user profiling to protein-protein interactions in biology. RGGs are also of purely theoretical interest since the underlying geometry gives rise to challenging mathematical questions. Their resolutions i...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
In the past decade, thanks to abundant data and adequate soft- ware tools, complex networks have bee...
This is a research report that is part of a Chapter of a PhD thesis. An updated version will be avai...
This is a research report that is part of a Chapter of a PhD thesis. An updated version will be avai...
This is a research report that is part of a Chapter of a PhD thesis. An updated version will be avai...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
Abstract: Many different random graph constructions are used to model large real life graphs, i.e., ...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
In the past decade, thanks to abundant data and adequate software tools, complex networks have been ...
Real-world networks, like social networks or the internet infrastructure, have structural properties...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
In the past decade, thanks to abundant data and adequate soft- ware tools, complex networks have bee...
In the past decade, thanks to abundant data and adequate software tools, complex networks have been ...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
In the past decade, thanks to abundant data and adequate soft- ware tools, complex networks have bee...
This is a research report that is part of a Chapter of a PhD thesis. An updated version will be avai...
This is a research report that is part of a Chapter of a PhD thesis. An updated version will be avai...
This is a research report that is part of a Chapter of a PhD thesis. An updated version will be avai...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
Abstract: Many different random graph constructions are used to model large real life graphs, i.e., ...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
In the past decade, thanks to abundant data and adequate software tools, complex networks have been ...
Real-world networks, like social networks or the internet infrastructure, have structural properties...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
In the past decade, thanks to abundant data and adequate soft- ware tools, complex networks have bee...
In the past decade, thanks to abundant data and adequate software tools, complex networks have been ...
A generalization of the random geometric graph (RGG) model is proposed by considering a set of point...
Wireless networks in which the node locations are random are best modelled as random geometric graph...
In the past decade, thanks to abundant data and adequate soft- ware tools, complex networks have bee...