Innovating New Space Frontiers: Harmonised Federated And Fractionated Systems Unlocking Fresh Perspectives For Satellite Services
Lead Research Organisation:
Heriot-Watt University
Department Name: Sch of Engineering and Physical Science
Abstract
Major developments in small satellite technologies coupled with the rapid commercialisation of New Space are disrupting the space landscape. A driving role rests with the telecommunication vertical, where market demands for global connectivity led to the emergence of LEO and MEO mega-constellation and are accelerating efforts for the integration of non-terrestrial with terrestrial networks. Core to this vision is an architectural paradigm shift from large monolithic satellites to an orchestrated network of multiorbit spaceborne nodes of various sizes and capabilities. On the other hand, space missions traditionally dominated by governmental initiatives - such as Navigation (GNSS) and Earth observation (EO) - are slower in adopting the New Space spirit towards coordination and synergetic exploitation of emerging and established satellite systems. Yet these systems have had transformative impact on our daily lives along a plethora of applications and verticals. Anticipating the next New Space frontiers in commercially driven missions within these domains, a central view of HARMONY is that step change potential will be released by adopting distributed satellite architectures across a range of existing and new applications where the space environment provides unique benefits. Placing innovative space services at its core, HARMONY will adopt a cross-disciplinary & vertically integrated approach in the study of federated and fractionated satellite system architectures and the development of core underpinning technologies in a doctoral network that will nurture future European New Space leaders.
Organisations
People |
ORCID iD |
| George Goussetis (Principal Investigator) |
Publications
| Title | Active antenna modelling |
| Description | A model for fast computation of radiation patterns for highly integrated antenna arrays |
| Type Of Material | Computer model/algorithm |
| Year Produced | 2024 |
| Provided To Others? | No |
| Impact | Previously unavailable capability to model the non-linearities and mutual coupling effects in direct radiating arrays |
| Description | Science is Wonderful 2025 |
| Form Of Engagement Activity | Participation in an activity, workshop or similar |
| Part Of Official Scheme? | No |
| Geographic Reach | International |
| Primary Audience | Public/other audiences |
| Results and Impact | The 2025 edition will take place in Brussels in mid-March 2025. The science fair lasts 2 days, with teams of researchers showcasing their work at booths through Groups of pupils visit the booths. Group sizes can vary from a small group to an entire school class, usually from 7 to 18 year-olds. |
| Year(s) Of Engagement Activity | 2025 |
| URL | https://marie-sklodowska-curie-actions.ec.europa.eu/news/showcase-your-research-at-science-is-wonder... |