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Ubiquitous Integrated Sensing and Communications for Massive MIMO LEO Satellite Systems

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arxiv 2407.05029 v1 pith:I3LIG6VM submitted 2024-07-06 eess.SP cs.ITmath.IT

classification eess.SPcs.ITmath.IT
keywords satellitesystemscommunicationsisacmassivemimosensingintegrated
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The next sixth generation (6G) networks are envisioned to integrate sensing and communications in a single system, thus greatly improving spectrum utilization and reducing hardware costs. Low earth orbit (LEO) satellite communications combined with massive multiple-input multiple-output (MIMO) technology holds significant promise in offering ubiquitous and seamless connectivity with high data rates. Existing integrated sensing and communications (ISAC) studies mainly focus on terrestrial systems, while operating ISAC in massive MIMO LEO satellite systems is promising to provide high-capacity communication and flexible sensing ubiquitously. In this paper, we first give an overview of LEO satellite systems and ISAC and consider adopting ISAC in the massive MIMO LEO satellite systems. Then, the recent research advances are presented. A discussion on related challenges and key enabling technologies follows. Finally, we point out some open issues and promising research directions.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Enhancing Energy and Spectral Efficiency in IoT-Cellular Networks via Active SIM-Equipped LEO Satellites

    eess.SY 2025-08 reject novelty 4.0 of 10

    Simulation results claim an active multi-layer metasurface on a LEO satellite improves spectral and energy efficiency over single-layer RIS designs, but the supporting equations contain serious internal inconsistencies.

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