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Emerging NGSO Constellations: Spectral Coexistence with GSO Satellite Communication Systems
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Global communications have undergone a paradigm shift with the rapid expansion of low-earth orbit (LEO) satellite constellations, offering a new space era of reduced latency and ubiquitous, high-speed broadband internet access. However, the fast developments in LEO orbits pose significant challenges, particularly the coexistence with geostationary earth orbit (GEO) satellite systems. This article presents an overview of the regulatory aspects that cover the spectrum sharing in the bands allocated to the Fixed Satellite Service between geostationary networks (GSO) and non-geostationary systems (NGSO), as well as the main interference mitigation techniques for their coexistence. Our work highlights the increased potential for inter-system interference. It explores the regulatory landscape following the World Radio Conference (WRC-23). We discuss the different interference management strategies proposed for the GSO-NGSO spectral coexistence, including on-board and ground-based approaches and more advanced mitigation techniques based on beamforming. Moving onto operational aspects related to the sharing of spectrum, we introduce recent work on interference detection, identification, and mitigation and provide our vision of the emerging role of artificial intelligence (AI) in the aforementioned tasks.
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Cited by 1 Pith paper
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Interference-Aware Multiuser Hybrid Precoding for Coexistence with LEO Satellite Communication
A block coordinate descent hybrid precoding algorithm with a satellite interference penalty cuts LEO satellite interference-to-noise by 22.4 dB while keeping multiuser sum-rate within about 3% of existing hybrid solutions.
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