Founding offer · lifetime membership for a single £24, exclusive to our first members · closes 20 June Claim your place →
Global Research Partnerships £24 Lifetime Log inCreate free account

Funded Projects › HORIZON

TERA6G · TERAhertz integrated systems enabling 6G Terabit-per-second ultra-massive MIMO wireless networks

HORIZONStatus: SIGNED1 January 202330 June 2026EU funding €5,892,963Call HORIZON-JU-SNS-2022

TERA6G aims at developing disruptive photonic wireless transceivers enabling Terabit-per-second data throughput capacity and massive Multiple-Input/Multiple-Output multi-antenna techniques operating in the millimeter-wave (30 GHz to 300 GHz) and Terahertz (300 GHz to 3 THz) bands of the spectrum, unlocking the “Fiber-over-the-Air” concept. The concept uses independently steerable wireless pencil-beams with fiber data throughput capacity, allowing mobile site connectivity scenarios in dense urban areas with macro/street level densification, temporal mobile site connectivity in ad-hoc networks, and connectivity to moving objects in public or private networks.Hybrid photonic integration is the key enabler technology to develop a Blass-Matrix Transmitter and an incoherent-multi-band Receiver with key disruptive characteristics, including agility (handling any modulation scheme and continuous tuning of the carrier frequency across the target spectrum range), scalability (handling large number of beams with 2-dimensional antenna arrays for beamformed antenna gain >25 dBi and > 100º steering angles beam-steering) and reconfigurability (performing a variety of functions, from wireless data transmission, or radar ranging to channel sounding).These disruptive wireless transceiver modules characteristics will be exploited at network level by developing the dynamic allocation of the network resources that these bring. We plan to dynamically analyze the position of the different wireless nodes and the channel resources using respectively the radar ranging and channel sounding techniques enabled by the novel reconfigurable TERA6G photonic transceivers. This will allow for novel scheduling methods capable of alternating paths to establish the connectivity, ensuring connection reliability, and considering energy consumption in the establishment of the wireless link. TERA6G is the crossroad of previous H2020 projects TERAWAY, ARIADNE, TERRANOVA and FUDGE-5G.

Consortium · 12 organisations

coordinator

UNIVERSIDAD CARLOS III DE MADRID

ES · €408,238

participant

PHIX BV

NL · €312,750

participant

LEAPWAVE TECHNOLOGIES S.L.

ES · €226,394

participant

OULUN YLIOPISTO

FI · €469,500

participant

FRAUNHOFER GESELLSCHAFT ZUR FORDERUNG DER ANGEWANDTEN FORSCHUNG EV

DE · €1,812,619

participant

INTRACOM SINGLE MEMBER SA TELECOM SOLUTIONS

EL · €391,500

participant

LIONIX INTERNATIONAL BV

NL · €544,613

participant

UNIVERSITY OF PIRAEUS RESEARCH CENTER

EL · €352,500

participant

TELEFONICA INNOVACION DIGITAL SL

ES · €339,975

participant

CUMUCORE OY

FI · €400,500

participant

EREVNITIKO PANEPISTIMIAKO INSTITOUTO SYSTIMATON EPIKOINONION KAI YPOLOGISTON

EL · €634,375

thirdParty

UNIVERSIDAD POLITECNICA DE MADRID

ES

Research fields

View the official record on CORDIS →

← 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.