Vertical Sectorisation (VS) is a feature that exploits the capabilities of Active Antenna Systems (AAS) to improve service performance and network capacity, by splitting a single cell into an inner and outer sector. The attained gains primarily depend on the suitable and timely (de)activation of VS in response to the observed/estimated traffic distribution within the cell, while further gains can be achieved by properly adjusting VS parameters such as the transmit power distribution. Considering a realistic LTE (Long Term Evolution) network environment, in this paper a SON (Self Organizing Network) algorithm is proposed and evaluated, which dynamically (de)activates the VS feature and sets the transmit power split. The results show that the...
The mobile network of Orange in France comprises more than 100 000 2G, 3G and 4G antennas with sever...
In order to reduce the operational expenditure, while optimizing network efficiency and service qual...
Traditional cellular network infrastructure provide fixed radio coverage. The temporal changes in us...
The advent of Active Antenna Systems has provided new ways and features for increasing the capacity ...
Cellular radio networks continuously evolve to respond the exponential growth in data traffic volume...
Cellular radio networks continuously evolve to respond the exponential growth in data traffic volume...
International audience—Vertical Sectorization (VS) consists in creating ver-tically separated sector...
Virtual Sectorization (ViS) is proposed as a solution to cope with the exponential growth of data tr...
The aim of this paper is to examine the benefits of rapid dynamic tilting antennas when applied to a...
The rapidly growing demand of capacity by wireless services is challenging the mobile industry with ...
The rapidly growing demand of capacity by wireless services is challenging the mobile industry with ...
In order to enhance the Long Term Evolution (LTE) network performance, the Third Generation Partners...
Self-Organizing Networks (SON) are currently being introduced by the 3rd Generation Partnership Proj...
Self-Organizing Networks (SON) are currently being introduced by the 3rd Generation Partnership Proj...
The mobile network of Orange in France comprises more than 100 000 2G, 3G and 4G antennas with sever...
The mobile network of Orange in France comprises more than 100 000 2G, 3G and 4G antennas with sever...
In order to reduce the operational expenditure, while optimizing network efficiency and service qual...
Traditional cellular network infrastructure provide fixed radio coverage. The temporal changes in us...
The advent of Active Antenna Systems has provided new ways and features for increasing the capacity ...
Cellular radio networks continuously evolve to respond the exponential growth in data traffic volume...
Cellular radio networks continuously evolve to respond the exponential growth in data traffic volume...
International audience—Vertical Sectorization (VS) consists in creating ver-tically separated sector...
Virtual Sectorization (ViS) is proposed as a solution to cope with the exponential growth of data tr...
The aim of this paper is to examine the benefits of rapid dynamic tilting antennas when applied to a...
The rapidly growing demand of capacity by wireless services is challenging the mobile industry with ...
The rapidly growing demand of capacity by wireless services is challenging the mobile industry with ...
In order to enhance the Long Term Evolution (LTE) network performance, the Third Generation Partners...
Self-Organizing Networks (SON) are currently being introduced by the 3rd Generation Partnership Proj...
Self-Organizing Networks (SON) are currently being introduced by the 3rd Generation Partnership Proj...
The mobile network of Orange in France comprises more than 100 000 2G, 3G and 4G antennas with sever...
The mobile network of Orange in France comprises more than 100 000 2G, 3G and 4G antennas with sever...
In order to reduce the operational expenditure, while optimizing network efficiency and service qual...
Traditional cellular network infrastructure provide fixed radio coverage. The temporal changes in us...