We present an over-the-air testbed designed for assessing the performance of ultra-dense networks and related mobility management schemes based on tracking the location of user equipment. Location information of UEs at the physical layer of the radio access network allows for proactive and seamless handovers. This is particularly important for 5G ultra-dense networks where small cells may otherwise be overwhelmed by handover related signalling. We exploit sounding reference signals transmitted by UEs to track their location. Novel mobility management schemes can then be designed such that handover triggering is done by the network and without UE involvement. In current cellular networks, handover is triggered by downlink measurements carrie...
Location-aware technologies will revolutionize many aspects of commercial, public service, and milit...
The article of record as published may be found at http://dx.doi.org/10.1109/TVT.2018.2885413Publish...
For the past 40 years, the cellular industry has been relying on static radio access deployments wit...
We present an over-the-air testbed designed for assessing the performance of ultra-dense networks an...
| openaire: EC/H2020/815191/EU//PriMO-5GCellular systems are undergoing a transformation toward the ...
| openaire: EC/H2020/815191/EU//PriMO-5GCellular systems are undergoing a transformation toward the ...
Abstract: In the emerging 5G radio networks, beamforming-capable nodes are able to densely cover na...
The development and deployment of several wireless and cellular networks mean that users will deman...
In this article, the prospects and enabling technologies for high-efficiency device positioning and ...
Handover and mobility management are important and critical aspects of future ultra-dense cellular n...
In the emerging 5G radio networks, beamforming-capable nodes are able to densely cover narrow areas ...
The development and deployment of several wireless and cellular networks mean that users will demand...
Ultra-dense network deployment is a key technology for potentially achieving the capacity target of ...
The proliferation of mobile computing devices and local-area wireless networks has fostered a growin...
The upcoming fifth generation (5G) radio networks will be the game changer of future societies. In a...
Location-aware technologies will revolutionize many aspects of commercial, public service, and milit...
The article of record as published may be found at http://dx.doi.org/10.1109/TVT.2018.2885413Publish...
For the past 40 years, the cellular industry has been relying on static radio access deployments wit...
We present an over-the-air testbed designed for assessing the performance of ultra-dense networks an...
| openaire: EC/H2020/815191/EU//PriMO-5GCellular systems are undergoing a transformation toward the ...
| openaire: EC/H2020/815191/EU//PriMO-5GCellular systems are undergoing a transformation toward the ...
Abstract: In the emerging 5G radio networks, beamforming-capable nodes are able to densely cover na...
The development and deployment of several wireless and cellular networks mean that users will deman...
In this article, the prospects and enabling technologies for high-efficiency device positioning and ...
Handover and mobility management are important and critical aspects of future ultra-dense cellular n...
In the emerging 5G radio networks, beamforming-capable nodes are able to densely cover narrow areas ...
The development and deployment of several wireless and cellular networks mean that users will demand...
Ultra-dense network deployment is a key technology for potentially achieving the capacity target of ...
The proliferation of mobile computing devices and local-area wireless networks has fostered a growin...
The upcoming fifth generation (5G) radio networks will be the game changer of future societies. In a...
Location-aware technologies will revolutionize many aspects of commercial, public service, and milit...
The article of record as published may be found at http://dx.doi.org/10.1109/TVT.2018.2885413Publish...
For the past 40 years, the cellular industry has been relying on static radio access deployments wit...