Funded Projects › H2020
5G-XHaul · Dynamically Reconfigurable Optical-Wireless Backhaul/Fronthaul with Cognitive Control Plane for Small Cells and Cloud-RANs
Small Cells, Cloud-Radio Access Networks (C-RAN), Software Defined Networks (SDN) and Network Function Virtualization (NVF) are key enablers to address the demand for broadband connectivity with low cost and flexible implementations. Small Cells, in conjunction with C-RAN, SDN, NVF pose very stringent requirements on the transport network. Here flexible wireless solutions are required for dynamic backhaul and fronthaul architectures alongside very high capacity optical interconnects. However, there is no consensus on how both technologies can be most efficiently combined.5G-XHaul proposes a converged optical and wireless network solution able to flexibly connect Small Cells to the core network. Exploiting user mobility, our solution allows the dynamic allocation of network resources to predicted and actual hotspots. To support these novel concepts, we will develop:1) Dynamically programmable, high capacity, low latency, point-to-multipoint mm-Wave transceivers, cooperating with sub-6-GHz systems;2) A Time Shared Optical Network offering elastic and fine granular bandwidth allocation, cooperating with advanced passive optical networks;3) A software-defined cognitive control plane, able to forecast traffic demand in time and space, and the ability to reconfigure network components.The well balanced 5G-XHaul consortium of industrial and research partners with unique expertise and skills across the constituent domains of communication systems and networks will create impact through:a) Developing novel converged optical/wireless architectures and network management algorithms for mobile scenarios;b) Introduce advanced mm-Wave and optical transceivers and control functions;c) Support the development of international standards through technical and techno-economic contributions.5G-XHaul technologies will be integrated in a city-wide testbed in Bristol (UK). This will uniquely support the evaluation of novel optical and wireless elements and end-to-end performance.
Consortium · 13 organisations
IHP GMBH - LEIBNIZ INSTITUTE FOR HIGH PERFORMANCE MICROELECTRONICS
DE · €781,250
Xilinx Dresden GMBH
DE · €912,500
HUAWEI TECHNOLOGIES DUESSELDORF GMBH
DE · €581,250
COSMOTE KINITES TILEPIKOINONIES MONOPROSOPI AE
EL · €244,875
BLU WIRELESS TECHNOLOGY LIMITED
UK · €591,700
TELEFONICA INVESTIGACION Y DESARROLLO SA
ES · €265,125
UNIVERSITAT POLITECNICA DE CATALUNYA
ES
TES ELECTRONIC SOLUTIONS GMBH
DE · €560,010
UNIVERSITY OF BRISTOL
UK · €848,500
PANEPISTIMIO THESSALIAS
EL · €623,750
ADTRAN NETWORKS SE
DE · €633,125
FUNDACIO PRIVADA I2CAT, INTERNET I INNOVACIO DIGITAL A CATALUNYA
ES · €603,053
TECHNISCHE UNIVERSITAET DRESDEN
DE · €588,750
Research fields
← Find collaborators and more funded projects
Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.