International audienceModeling and simulation of a cellular network typically assumes that the target area is divided into regular hexagonal cells and mobile stations (MSs) are uniformly scattered in each cell. This implies a statistically uniform distribution of traffic load over space, but in reality the spatial traffic distribution is highly non-uniform across different cells, which calls for actual spatial traffic models. In this article, we first present the analysis of traffic measurements collected from commercial cellular networks in China, and demonstrate that the spatial distribution of the traffic density (the traffic load per unit area) can be approximated by the log-normal or Weibull distribution depending on time and space. Th...
While analyzing mobile systems we often approximate the actual coverage surface and assume an ideal ...
Abstract—A recent approach in modeling and analysis of the supply and demand in heterogeneous wirele...
The growing demand for network capacity due to mobile devices and data-hungry applications has promp...
International audienceModeling and simulation of a cellular network typically assumes that the targe...
Abstract—Future generation (5G and beyond) cellular net-works have to deal not only with an extreme ...
As the volume of mobile traffic has been growing quickly in recent years, reducing the congestion of...
Future generation (5G and beyond) cellular networks have to deal not only with an extreme traffic de...
The final publication is available at Springer via http://dx.doi.org/10.1007/978-3-319-92016-0_9The ...
Base stations (BSs) deployment and traffic spatial distribution play crucial roles in network design...
Abstract—This paper explores the influence of the inho-mogeneous spatial traffic distribution on the...
Part 2: 5G-PINEInternational audienceThe characterization of the space/time traffic profiles in a ce...
International audienceThe performance of cellular system significantlydepends on its network topolog...
We derive closed-form expressions for reasonably tight lower bounds and upper bounds for the signal-...
Abstract—Wireless cellular network planning benefits from accurate and realistic, yet relatively sim...
International audienceA model of cellular networks where the base station locations constitute a Poi...
While analyzing mobile systems we often approximate the actual coverage surface and assume an ideal ...
Abstract—A recent approach in modeling and analysis of the supply and demand in heterogeneous wirele...
The growing demand for network capacity due to mobile devices and data-hungry applications has promp...
International audienceModeling and simulation of a cellular network typically assumes that the targe...
Abstract—Future generation (5G and beyond) cellular net-works have to deal not only with an extreme ...
As the volume of mobile traffic has been growing quickly in recent years, reducing the congestion of...
Future generation (5G and beyond) cellular networks have to deal not only with an extreme traffic de...
The final publication is available at Springer via http://dx.doi.org/10.1007/978-3-319-92016-0_9The ...
Base stations (BSs) deployment and traffic spatial distribution play crucial roles in network design...
Abstract—This paper explores the influence of the inho-mogeneous spatial traffic distribution on the...
Part 2: 5G-PINEInternational audienceThe characterization of the space/time traffic profiles in a ce...
International audienceThe performance of cellular system significantlydepends on its network topolog...
We derive closed-form expressions for reasonably tight lower bounds and upper bounds for the signal-...
Abstract—Wireless cellular network planning benefits from accurate and realistic, yet relatively sim...
International audienceA model of cellular networks where the base station locations constitute a Poi...
While analyzing mobile systems we often approximate the actual coverage surface and assume an ideal ...
Abstract—A recent approach in modeling and analysis of the supply and demand in heterogeneous wirele...
The growing demand for network capacity due to mobile devices and data-hungry applications has promp...