Reconfigurable Intelligent Surface-Enhanced Satellite Networks: Deployment Strategies, Key Capabilities, Practical Solutions, and Future Directions
arXiv:2512.20982 · doi:10.1038/s44459-026-00051-0
Abstract
Satellite networks promise wide-area 6G coverage but face two persistent barriers: blockage-induced service discontinuities and increasingly stringent spectrum coexistence across satellite layers and with terrestrial systems. Reconfigurable intelligent surfaces (RISs) act as low-power programmable apertures that redirect energy without the cost and power consumption of fully active arrays. We develop a deployment-first, operations-aware view of RIS-enabled satellite networking that treats RIS as both satellite/terminal antennas and inter-satellite or space-ground relays. We show that system-level gains are governed by two unifying mechanisms: connectivity restoration via virtual line-of-sight links that preserve connectivity under blockage and mobility, and angular selectivity that reshapes interference to enlarge spectrum reuse. We further discuss practical operation under high mobility, highlighting Delay-Doppler channel acquisition, predictive beam tracking, and control designs that budget overhead and latency, and summarize hardware considerations for reliable operation in space. Finally, we outline forward-looking opportunities in the generative artificial intelligence paradigm, multifunctional RIS architectures, ubiquitous satellite integrated sensing and communication, and sustainable satellite Internet-of-Things.
46 pages, 10 figures, 5 tables, submitted to npj Wireless Technology
References in corpus (12)
- Wireless Communications with Reconfigurable Intelligent Surface: Path Loss Modeling and Experimental Measurement
- STARS Enabled Integrated Sensing and Communications
- Advancing Multi-Connectivity in Satellite-Terrestrial Integrated Networks: Architectures, Challenges, and Applications
- An Analytical Model for Coordinated Multi-Satellite Joint Transmission System
- Downlink Performance of Cell-Free Massive MIMO for LEO Satellite Mega-Constellation
- Spectrum Sharing in Satellite-Terrestrial Integrated Networks: Frameworks, Approaches, and Opportunities
- A Bistatic Sensing System in Space-Air-Ground Integrated Networks
- Spectrum Sharing in 6G Space-Ground Integrated Networks: A Ground Protection Zone-Based Design
- Towards Quantum SAGINs Harnessing Optical RISs: Applications, Advances, and the Road Ahead
- Coverage and Spectral Efficiency of NOMA-Enabled LEO Satellite Networks with Ordering Schemes
- LEO Satellite and RIS: Two Keys to Seamless Indoor and Outdoor Localization
- 6G RIS-aided Single-LEO Localization with Slow and Fast Doppler Effects