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Funded Projects › HORIZON

TeraWireless · Wireless Networks at Optical Speed with Deterministic Performance

HORIZONStatus: SIGNED1 March 202528 February 2029EU funding €3,454,942Call HORIZON-MSCA-2023-DN-01

Future networks will support several applications that require extending fiber-optic quality of experience to wireless links. This means connectivity at extremely high data rates with deterministic performance (guaranteed requirements in terms of reliability and time response). Virtual avatar presence, traffic control, autonomous driving, remote health monitoring, cyber physical systems for intelligent transportation, industrial automation are only a few examples of anticipated use cases. Owing to the large amount of available bandwidth, the European Telecommunications Standards Institute has identified terahertz (THz) as a key technology for future wireless networks. TeraWireless is the first EU training-through-research industrial doctoral network of doctoral candidates and senior supervisors fully committed to lay the theoretical, algorithmic, and architectural foundations for enabling THz systems at optical speed with deterministic performance. TeraWireless will 1) put forth the innovative ultra-MIMO (multiple-input multiple-output) technology for increasing the data rate and link reliability through spatial multiplexing and superdirective beamforming, and will pioneer the development of electromagnetic and communication models for evaluating its performance in low-scattering THz channels, where multipath propagation cannot be exploited, by integrating sensing, localization, communication capabilities; 2) leverage the emerging concept of semantic and goal-oriented communications by folding message semantics and goals of communication within communication layers; 3) develop innovative physics-based ML solutions for energy-efficient, robust, reliable, and explainable-by-design implementations; 4) make available to the research community the EU’s and world’s first open-access and open-source simulation environment - integrating ray tracing, link-level, and system-level features - for evaluating and optimizing THz large-scale deterministic networks at optical speed.

Consortium · 11 organisations

coordinator

UNIVERSITY OF PIRAEUS RESEARCH CENTER

EL · €480,197

participant

RANPLAN GROUP AB

SE · €293,710

associatedPartner

UNIVERSIDAD PUBLICA DE NAVARRA

ES

associatedPartner

UNIVERSITA DEGLI STUDI DI NAPOLI FEDERICO II

IT

participant

UNIVERSITA DI PISA

IT · €259,438

participant

ANTERAL SL

ES · €251,971

associatedPartner

BRITISH TELECOMMUNICATIONS PLC

UK

participant

NOKIA NETWORKS FRANCE

FR · €282,694

participant

CONSORZIO NAZIONALE INTERUNIVERSITARIO PER LE TELECOMUNICAZIONI

IT · €778,313

participant

CENTRALESUPELEC

FR · €848,081

participant

TECHNISCHE UNIVERSITAET DRESDEN

DE · €260,539

Research fields

View the official record on CORDIS →

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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.