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Multi-dimensional quantum-enabled sub-THz Space-Borne ISAR sensing for space domain awareness and critical infrastructure monitoring - SBISAR

Lead Research Organisation: UNIVERSITY OF BIRMINGHAM
Department Name: Electronic, Electrical and Computer Eng

Abstract

We live in increasingly connected world, reliant on ubiquitous digital infrastructure of increasing reach and complexity, and integration of terrestrial and space communication and sensing networks to gather, share and exchange information in a persistent way without natural barriers has already started. Higher levels of inter-reliability of the services require fast and actionable automatic assessment of physical infrastructure to detect potential anomalies. The explosive growth of Earth-orbiting satellite populations in protected LEO and GEO regions exacerbates the risk of disruption from either impact with space objects or debris, or hostile activity intended to re-purpose the satellite or its whole network using spawned objects.

This research lays the foundation for a new capability for multi-perspective monitoring of dynamic environments, using quantum enabled space-borne inverse synthetic aperture radar (ISAR) imagery. It will use sub-THz scattering from multi-scale manmade objects and clusters of debris to generate a library of scattering characteristics of satellite descriptors and deployables, and develop robust deep-learning classification and recognition approaches for anomaly detection and characterization. The technology will make the most of the advantages for in-orbit monitoring from space, including:

- The elimination of atmospheric absorption and attenuation, and thus the need for high power transmission to compensate for large propagation losses over large distances, inherent to ground based systems.
- The shorter operational ranges and the absence of atmospheric adverse phenomena allow use of high frequencies (above 100 GHz) able to deliver unprecedented resolution of radar imagery with a compact sensor.
- The diversity of accessible vantage points provided by 3D observation trajectories from space. This delivers currently missing object observation from viewing aspects not available from the ground, as well as reconstruction of multi-temporal or multi-perspective 2D and 3D imagery.

The data from these multi-dimensional observations will enable end-to-end segmentation and classification, in particular, anomalies in appearance or behaviour.

The project's ambitious goal is to undertake multi-disciplinary fundamental and applied studies to enable innovative sensing for space infrastructure monitoring by use of space-based multi-dimensional Inverse Synthetic Aperture Radar (ISAR) operating in the sub-terahertz region (Sub-THz). Such technology will be able to deliver co-operative Space Domain Awareness (CoSDA) based on quantum-enabled distributed space-borne radar, which can be a game changer for monitoring and protection of high value assets. The system will be able to track potential hazards, image and characterize the space residents at ranges and from aspects unavailable from Earth, and with a resolution unachievable from Earth, to deliver additional dimensionality of data to existing Space Situational Awareness (SSA) electro-optical sensors and ground-based radar (GBR).

The technology builds a strong foundation for ensuring the future safety and security of highly interconnected autonomous systems.

Publications

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Jones G (2026) Toward Co-Operative Space Domain Awareness (CoSDA): Space-Based Sub-THz Inverse Synthetic Aperture Radar in IEEE Transactions on Aerospace and Electronic Systems

 
Description Invited member of two FNR panels Luxembourg
Geographic Reach National 
Policy Influence Type Participation in a guidance/advisory committee
 
Description ASPIRE Joint Project Leads award for Dr. Leah-Nani Alconcel and Prof. M. Gashinova for capacity-building toward network or consortium funding application
Amount £7,500 (GBP)
Organisation Wellcome Trust 
Sector Charity/Non Profit
Country United Kingdom
Start 03/2025 
End 12/2025
 
Description Long Baseline Multistatic Radar for Deep Space Domain Awareness
Amount £479,000 (GBP)
Funding ID https://www.gov.uk/government/news/uk-space-agency-goes-global-with-23-new-projects 
Organisation UK Space Agency 
Sector Public
Country United Kingdom
Start 08/2025 
End 09/2026
 
Description • EPSRC Quantum Technologies Hub with two Co-Investigators - Prof. Mikhail Antoniou and Dr. Leah-Nani Alconcel
Amount £21,369,588 (GBP)
Funding ID EP/Z533166/1 
Organisation Engineering and Physical Sciences Research Council (EPSRC) 
Sector Public
Country United Kingdom
Start 12/2025 
End 11/2029
 
Description • University of Birmingham Institute for Sustainability and Climate Action (BISCA) summer internship award to Dr. Leah-Nani Alconcel
Amount £2,500 (GBP)
Organisation University of Birmingham 
Sector Academic/University
Country United Kingdom
Start 05/2025 
End 08/2025
 
Description Collaboration with the University of Surrey on sensing and communication 
Organisation University of Surrey
Country United Kingdom 
Sector Academic/University 
PI Contribution UoB is going to develop the sensing capability based on the communication signals and communication strategies.
Collaborator Contribution Surrey is developing the strategies to tune the satellite into intelligent reflector for comms
Impact The collaboration is in progress, there are many pathways to impact, inclduing further funding, wider collaborations with SSTL and SES etc.
Start Year 2024
 
Description Echoes Radar Technology for payload design 
Organisation Maxar Technologies
Country United States 
Sector Private 
PI Contribution With this EU partner we aim to develop innovative double frequency payload design for in-orbit ISAR-base imagery and RSO characterization for RPOD operations of future servcers.
Collaborator Contribution The partner will develop a principle design by our specification to demonstrate for the first time use of SDR-based ISAR for kinematic parameters estimation of the RSO.
Impact Preparing an ESA proposal
Start Year 2006
 
Description collaboration with Goonhilly ES to develop multistatic co-operative sensing - Earth and In-orbit 
Organisation Goonhilly Satellite Earth Station
Country United Kingdom 
Sector Private 
PI Contribution UoB is looking to develop a passive bistatic ISAR using Goonhilly signals
Collaborator Contribution Goonhilly is providing an information about trackied objects and signal parameters
Impact This collaboration will complement and widen the main goal of SBISAR to include the powerful signals from SSA stations to track and make a bistatic ISAR imagery at lower frequencies of the satellites which will be imaged from in-orbit SBISAR capability
Start Year 2025
 
Title Graphical Electromagnetic Simulator for sub-THz ISAR imagery simulation 
Description GEIST (the Graphical Electromagnetic Simulator for sub-THz waves) has been designed to facilitate the simulation physically-motivated high-resolution sub-THz ISAR imagery, hundred of order of magnitude faster than full-wave electromagnetic simulation methods, used in benchmarking analysis. It uses Blender's built-in GPU-accelerated ray-tracing capability to produce scattering-centre point clouds with realistic amplitudes, which are then used to generate range-Doppler ISAR imagery based on the specified relative motion parameters. The GEIST was initially proposed in DASA funded project, but in SBISAR project new featurs were added, including physical channel parametrization, different fidelity modes and automatic labelling for classification 
Type Of Technology New/Improved Technique/Technology 
Year Produced 2025 
Impact This eanble development of end to end automatic classifiers of resident space objects and therefore advances in-orbit sensing to the level of capable of full characterization 
URL https://ieeexplore.ieee.org/document/10734967
 
Title InISAR based attitude and sping of satellite model 
Description A novel spin estimation framework is proposed based on multiperspective InISAR, which leverages viewing angle diversity during on-orbit observation to resolve the total rotation vector of space targets. The proposed method performs InISAR imaging and the estimation of the effective rotation vector for each perspective, followed by the combination of effective rotation vectors to determine the total rotation vector as a unified least-squares solution. The framework requires no prior 3-D model and achieves robust spin estimation. 
Type Of Technology New/Improved Technique/Technology 
Year Produced 2025 
Impact This makes the imagery suitable for estimation of the kinematic parameters of the Residnt Space Object, which enable motion synchronization for RPOD services, based on accurate radar measurement from servicer/orbiter space platform. 
URL https://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=11363620
 
Title PNA-ased 300 GHz InISAR test-bench for laboratory validation 
Description This is a unique test bench, consisting of multi-static 300 GHz transmit and receive nodes, translational and trotational motion positioner, service software to operate the positioners and Matlab-based codes to process the data aquired in stop-and-go data collection. 
Type Of Technology Physical Model/Kit 
Year Produced 2025 
Impact This allows building a 3D InISAR-based point cloud of the object and enables validation of GEIST proprietary simulator and models 
 
Description EMSIG focus Group "Radar for Space", Chairs M.Gashinova, M.Martorella, LN Alconcel, D. Robertson 
Form Of Engagement Activity A formal working group, expert panel or dialogue
Part Of Official Scheme? No
Geographic Reach National
Primary Audience Professional Practitioners
Results and Impact Radar for Space (RfS) is the focus group that encompasses all uses of radar relevant to space, including:
(i) Space situational awareness and space domain awareness, considering both ground-based and space-based radar sensors
(ii) Earth observation using space-based radar
(iii) Sensing technologies and RF/ EM systems and components
(iv) AI-based approaches for enhanced SDA/SSA.
The group's main goals are in identifying current challenges and gaps, defining perspective directions of research and successful strategies for collaboration, as well as finding the complementarity of the expertise within the group and knowledge exchange. One of the intentions of the group activities is to form a recognized expert structure that can be involved in policymaking and regulatory activities within the UK and internationally.
Year(s) Of Engagement Activity 2024,2025
URL https://www.emsig.org.uk/rfs-meeting-2025
 
Description NATO SET-340 RTG on "Multistatic RF Sensing for Enhanced Space Domain Awareness" - chair is Prof. Marco Martorella 
Form Of Engagement Activity A formal working group, expert panel or dialogue
Part Of Official Scheme? No
Geographic Reach International
Primary Audience Professional Practitioners
Results and Impact Research Task Group (RTG): RTGs, sponsored by STCs, bring together international experts (of representatives of NATO and NATO associated countries) to solve specific research and technological problems. RTGs operate for a maximum of three years, and may include cooperative
demonstrations of technology (CDTs) or field trials (FTs).
Year(s) Of Engagement Activity 2024,2025
URL https://www.sto.nato.int/Pages/activitieslisting.aspx
 
Description • Ignite Space, National Space Centre, Leicester, UK - 5-6 February 2025 - "Radar for Space" stand funded by UK Space Agency Midlands Space Cluster 
Form Of Engagement Activity Participation in an activity, workshop or similar
Part Of Official Scheme? No
Geographic Reach National
Primary Audience Professional Practitioners
Results and Impact Ignite Space is acting as a catalyst for commercial success. Ignite Space conference and exhibition 2025 create opportunities for academia and business to engage with new customers, collaborators and investors within the UK space industry and its supply chain.
The event ifocus is showcasing an industry worth more than £17.5bn to the UK economy, to accelerate growth and collaboration across the sector.

Audiences: All those working in, or who seek opportunities in, the UK space sector. IgniteSpace especially encourage SMEs in the space sector and businesses from sectors with space-applicable technologies.
Year(s) Of Engagement Activity 2025
URL https://www.ignite-space.co.uk/2025-agenda