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Ultra capacity wireless layer beyond 100 GHz based on millimeter wave Traveling Wave Tubes

Descrizione del progetto

Rete di ritorno a onde millimetriche per le reti wireless 5G

Per la prima volta gli smartphone e i tablet hanno superato i computer fissi in termini di utilizzo dei dati, rendendo necessaria una migliore copertura wireless. L’aumento del numero di celle 5G (densificazione) è l’unica soluzione possibile per affrontare questo problema. Tuttavia il tentativo di ottenere una rete di ritorno ad alta densità rimane una sfida. Il progetto ULTRAWAVE, finanziato dall’UE, intende affrontare questo problema sfruttando lo spettro delle onde millimetriche oltre i 100 GHz, creando un livello di ultra-capacità che fornisca oltre 100 Gbps per chilometro quadrato. Il sistema ULTRAWAVE proposto combinerà l’elettronica del vuoto, l’elettronica a stato solido e la fotonica, rendendo possibile la rete di ritorno per centinaia di piccole e pico celle, e supportando così la completa implementazione del 5G.

Obiettivo

For the first time, smartphones and tablets data usage exceeds desktops. This is a wake up call for manufacturers and operators to provide users with ubiquitous, high speed and high quality wireless coverage. The 5G cell densification is the only available route due to the constraints of sub-6GHz networks. A dense deployment of small cells requires a capillary backhaul and novel approaches to fronthaul. While the increase of data rate at small cell level has found solutions, the quest for high-density backhaul remains still unanswered. The fiber is too expensive and of difficult deployment. The wireless backhaul is the preferred solution for operators for performance, flexibility and cost. The traffic demand requires an upshift from microwave to high capacity millimeter wave backhaul, and overcome the current technology limits. ULTRAWAVE responds to the challenge of high capacity, high cell density backhaul by proposing, for the first time, the exploitation of the whole millimeter wave spectrum beyond 100 GHz. This will be used to create an ultra capacity layer providing more than 100 Gbps per kilometer square in Point to Multi point at D-band (141 – 174.8 GHz) over 500 m radius of coverage, fed by novel G-band (300 GHz) Point to Point high capacity links with more than 600 m range. The ULTRAWAVE system is empowered by the convergence of three main technologies: vacuum electronics, solid-state electronics and photonics in a unique wireless system, with transmission power at Watt level at millimeter waves, generated by novel traveling wave tubes. The ULTRAWAVE consortium includes five top Academic institutions and three high technology SMEs from five European countries. The vast capacity, flexibility and easy deployment of the ULTRAWAVE layer will enable backhaul of hundreds of small and pico cells, no matter the density, and will open scenarios so far not conceivable for new networks paradigms and architectures aiming at a full 5G implementation.

Invito a presentare proposte

H2020-ICT-2016-2017

Vedi altri progetti per questo bando

Bando secondario

H2020-ICT-2016-2

Meccanismo di finanziamento

RIA - Research and Innovation action

Coordinatore

UNIVERSITY OF LANCASTER
Contribution nette de l'UE
€ 687 803,75
Indirizzo
BAILRIGG
LA1 4YW Lancaster
Regno Unito

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Regione
North West (England) Lancashire Lancaster and Wyre
Tipo di attività
Higher or Secondary Education Establishments
Collegamenti
Costo totale
€ 687 803,75

Partecipanti (8)