EventsEuropean Navigation Conference 2024
Published
This submission belongs to the session Topic 5. Future Trends in Navigation of the event European Navigation Conference 2024
Published date
08 Oct, 2024
Academic Editor
author-avatarRuneeta Rai
Citation
Francesco Menzione, Ottavio Picchi, Tommaso Senni, Vladimir Zelenevskiy, Luca Cucchi, Andrea Piccolo, Joaquim Fortuny Guash, Interference Monitoring from Low Earth Orbit: the OPS-SAT experiment, in Proceedings of European Navigation Conference 2024, Noordwijk, Zuid/Holland, 22 May–24 May 2024, MDPI: Basel, Switzerland
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Interference Monitoring from Low Earth Orbit: the OPS-SAT experiment

Ottavio Picchi 2
Tommaso Senni 2
Vladimir Zelenevskiy 3
Luca Cucchi 4
Joaquim Fortuny Guash 5
1. European Commission Joint Research Centre, Italy
2. External consultant for European Commission, Joint Research Centre (JRC), Italy
3. European Space Agency (ESOC), Germany
4. European Commission, Joint Research Centre (JRC), Italy
5. European Commission, Joint Research Centre (JRC), Spain
Abstract

In the context of the Jammertest 2023, a collaborative experiment was carried out by the European Commission Joint Research Centre (JRC), the European Space Operations Centre of ESA, the Norwegian Communication Authority, and the Norwegian Defense Research Establishment (FFI) to explore potential RF interference monitoring in the navigation GNSS band from LEO orbit. The experiment utilizes the ESA OPS-SAT satellite and the possibility of transmitting a custom jamming signal pattern in the context of the Jammertest 2023 event. The objective is to validate the feasibility of detecting and locating ground-generated jamming signals using SDR technology on-board LEO. The insight into the signal structure and location provides a unique chance to assess the performance and limitations of this approach in a real-world scenario. The paper presents the processing of raw RF data collected during the in-flight experiment, including the generation of Frequency Difference Of Arrival (FDOA) observables and emitter geolocation. Despite the constraints posed by onboard resources and mission limitations, this work offers a persuasive proof of concept and suggests new guidelines for implementing this technology on future LEO missions

Keywords
RFI monitoring
interference localization
LEO satellite
Software-defined radio
Cross-Ambiguity Function
Frequency Difference Of Arrival
On the edge model-aided machine learning GNSS interference classification with low-cost COTS hardware
Jamming of a parked passenger jet: Sensitivity of the aircraft to jamming with varying power