Future Wireless Communications Empowered by Reconfigurable Intelligent Meta-Materials (META WIRELESS)

Akronym

META WIRELESS

Bidragets beskrivning

Wireless connectivity has become a pillar of our society. The growth of wireless traffic is relentless, forecast to reach a staggering worldwide aggregate of 5,016 exabytes by 2030, along with bit rates of 1 Tb/s and new services related to sensing, localization, low-latency, and ultra-reliability. While the performance of wireless networks has improved phenomenally over the last decades, progress is by now pushing against fundamental limits and the mechanisms that have sustained these huge improvements are starting to falter. New evolutionary leaps are called for in order to ensure that the aforementioned forecasts can become a reality. To date, every wireless system has abided by the premise that the propagation radio channel is fixed by nature and cannot be tampered with, but only compensated through ever more sophisticated transmission/reception schemes. A potential evolutionary leap for 6G-and-beyond networks is to break free from the postulate that channels are uncontrollable factors. Serving such a vision, META WIRELESS pursues the disruptive idea of designing wireless networks by treating the environment itself as a quantity to be controlled and optimized. Precisely, the manipulation of the wireless environment can be made possible by incorporating reconfigurable intelligent surfaces. These are planar structures, made of meta-materials and electromagnetically discontinuous, which do not adhere to conventional reflection and diffraction laws; rather, they can modify in a controllable fashion the phase and wavefront of impinging radio waves. If deployed to coat objects, walls, or building facades, they could allow customizing in real time the electromagnetic response of environments. Making this vision a reality requires the training of a new generation of researchers and a multidisciplinary effort involving wireless communications, physics, electromagnetic theory, and computational learning, which are the ingredients that define the META WIRELESS project.
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Startår

2020

Slutår

2025

Beviljade finansiering

561 611.52 €
Participant
NOKIA SOLUTIONS AND NETWORKS OY
280 805.76 €
Participant
GREENERWAVE (FR)
274 802.04 €
Participant
NEC LABORATORIES EUROPE GMBH (DE)
252 788.4 €
Participant
TELEFONICA INNOVACION DIGITAL SL (ES)
250 904.88 €
Participant
WAVE UP SRL (IT)
261 499.68 €
Participant
CONSORZIO NAZIONALE INTERUNIVERSITARIO PER LE TELECOMUNICAZIONI (IT)
522 999.36 €
Coordinator
UNIVERSIDAD POMPEU FABRA (ES)
250 904.88 €
Participant
TELEFONICA INVESTIGACION Y DESARROLLO SA (ES)
250 904.88 €
Participant
"NATIONAL CENTER FOR SCIENTIFIC RESEARCH "DEMOKRITOS" (EL)
243 017.64 €
Participant
TECHNISCHE UNIVERSITAET WIEN (AT)
264 207.24 €
Participant
KUNGLIGA TEKNISKA HOEGSKOLAN (SE)
281 982.96 €
Participant
CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (FR)
549 604.08 €
Participant

Beviljat belopp

3 995 128 €

Finansiär

Europeiska unionen

Typ av finansiering

Marie Skłodowska-Curie Innovative Training Networks (ITN)

Ramprogram

Horizon 2020 Framework Programme

Utlysning

Programdel
EXCELLENT SCIENCE - Marie Skłodowska-Curie Actions (5220)
Fostering new skills by means of excellent initial training of researchers (5221)
Tema
Innovative Training Networks (MSCA-ITN-2020)
Utlysnings ID
H2020-MSCA-ITN-2020

Övriga uppgifter

Finansieringsbeslutets nummer

956256

Identifierade teman

services, servitization