Completed Computing & AI Engineering

Platform Driving The Ultimate Connectivity

In plain English

AI plain-English summary

The TITAN platform is building a single, intelligent network that seamlessly stitches together everything from satellites and undersea cables to 6G mobile and quantum links. Today’s internet is a patchwork of separate systems—cellular, Wi-Fi, fibre, satellite—each with its own protocols and limitations. This fragmentation creates dead zones, latency, and security gaps. TITAN aims to solve this by using artificial intelligence to orchestrate all these networks as one, automatically selecting the best connection for each task. It will also integrate new technologies such as terahertz wireless, hollow-core optical fibres, reconfigurable intelligent surfaces, and quantum communication links, which currently lack the networking protocols to work together. If successful, TITAN could eliminate the digital divide by providing universal, seamless connectivity—whether in a deep rural valley, an underwater research station, or a high-altitude drone. It would also enable an “ultra-cognitive” network that can sense its environment, self-heal, and optimise energy use. For the public, this means no more dropped calls or buffering; for critical infrastructure, it means resilient, low-latency links for power grids, autonomous vehicles, and emergency services.

View original technical description
The research of the TITAN platform is geared towards the ultimate network of networks and is structured in six strongly interconnected lighthouse projects which reflect all network elements - 1) the core, 2) optical fibre, 3) radio frequency (RF) including cellular and wireless networks, 4) emerging optical wireless networks for access and backhaul, 5) non-terrestrial networks involving satellites, aerial and underwater networks, and finally 6) quantum communication networks. The research on the core network focuses on a new architecture and artificial intelligence (AI) techniques that enable the integration of multi-access technologies for a seamless end-to-end service delivery by considering advanced requirements in terms of data rate, latency, security and energy efficiency. TITAN will conduct novel research that aims at orchestrating the different existing and emerging RF networks (3G, 4G, 5G, 6G, WiFi, Bluetooth, etc.) towards a single network by developing techniques that would optimally select the respective RF network, or networks, and develop the respective protocols to enable a seamless end-to-end connection. Because of the undisputed need for new spectrum in future networks, TITAN will crucially include new networks that are built around the terahertz and optical spectrum. Since these networks will benefit from new intelligent reflecting surfaces as part of a new network element, TITAN will include research on the networking aspects and the integration of reconfigurable intelligent surfaces (RIS) by building on the work on AI and machine learning (ML) developed for other parts of the network, such as edge and core. Optical fibre networks are an important element of a network of networks. Therefore, TITAN will address research questions on the optimum integration of advanced optical fibre technologies such as hollowcore fibres and new agile transceiver technologies to support key network requirements such as latency. Universal service availability and what is described as the 'digital divide' represent an increasing societal challenge. Therefore, TITAN will conduct critical research on the integration of non-terrestrial networks which include aerial, satellite and underwater networks all geared towards a seamless end-to-end service provision which is achieved by the holistic approach of TITAN. Lastly, TITAN will meaningfully integrate new quantum network technologies alongside conventional networks and will provide important guidance on the optimum use of both fundamental networks. An important consideration of TITAN is the extraction of sensing information from networks. All network elements have particular features and, in conjunction with ML techniques, important side information can be extracted. TITAN will investigate this capability for each network segment, but crucially brings the independent sensing information together to achieve an ultra-cognitive network which exhibits the highest level of self-x (configuration, healing, automation, optimisation).

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Researchers

Arumugam Nallanathan (Co-Investigator)Bruno Clerckx (Co-Investigator)Cong Ling (Co-Investigator)David Richardson (Co-Investigator)Dimitra Simeonidou (Co-Investigator)Dominic O'Brien (Co-Investigator)Gan Zheng (Co-Investigator)Harald Haas (Principal Investigator)Hien Ngo (Co-Investigator)Iman Tavakkolnia (Co-Investigator)Jaafar Elmirghani (Co-Investigator)Jianming Tang (Co-Investigator)Johannes Herrnsdorf (Co-Investigator)John Thompson (Co-Investigator)Kin Leung (Co-Investigator)Lajos Hanzo (Co-Investigator)Leila Musavian (Co-Investigator)Mahsa Derakhshani (Co-Investigator)Majid Safari (Co-Investigator)Martin David Dawson (Co-Investigator)Mathini Sellathurai (Co-Investigator)Michalis Matthaiou (Co-Investigator)Mohammad Nakhai (Co-Investigator)Mohammed El-Hajjar (Co-Investigator)Nikolaos Thomos (Co-Investigator)Periklis Petropoulos (Co-Investigator)Rasheed Hussain (Co-Investigator)Reza Nejabati (Co-Investigator)Richard Penty (Co-Investigator)Sangarapillai Lambotharan (Co-Investigator)Seb Savory (Co-Investigator)Shuangyi Yan (Co-Investigator)Simon Cotton (Co-Investigator)Stefan Vlaski (Co-Investigator)Taisir Elgorashi (Co-Investigator)Toktam Mahmoodi (Co-Investigator)Wasiu Popoola (Co-Investigator)Xenofon Vasilakos (Co-Investigator)Yansha Deng (Co-Investigator)Yuanwei Liu (Co-Investigator)Yuli Yang (Co-Investigator)Yunfei Chen (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

TITAN Extension
Transforming networks - building an intelligent optical infrastructure (TRANSNET)
TACTILENet: Towards Agile, effiCient, auTonomous and massIvely LargE Network of things
SONATAS: Synthetic On-Chip and Off-Chip Optical Network System
Towards Ultimate Convergence of All Networks (TOUCAN)

Original classification

Research Grant

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