Inter-Plane Inter-Satellite Connectivity in Dense LEO Constellations
arXiv:2005.07965 · doi:10.1109/TWC.2021.3050335
Abstract
With numerous ongoing deployments owned by private companies and startups, dense satellite constellations deployed in low Earth orbit (LEO) will play a major role in the near future of wireless communications. In addition, the 3rd Generation Partnership Project (3GPP) has ongoing efforts to integrate satellites into 5G and beyond-5G networks. Nevertheless, numerous challenges must be overcome to fully exploit the connectivity capabilities of satellite constellations. These challenges are mainly a consequence of the low capabilities of individual small satellites, along with their high orbital speeds and small coverage due to the low altitude of deployment. In particular, inter-plane inter-satellite links (ISLs), which connect satellites from different orbital planes, are greatly dynamic and may be considerably affected by the Doppler shift. In this paper, we present a framework and the corresponding algorithms for the dynamic establishment of the inter-plane ISLs in LEO constellations. Our results show that the proposed algorithms increase the sum of rates in the constellation 1) by up to 115% with respect to the state-of-the-art benchmark schemes in an interference-free environment and 2) by up to 71% when compared to random resource allocation in a worst-case scenario for interference.
To be published in IEEE Transactions on Wireless Communications
Cited by in corpus (10)
- Joint Network Function Placement and Routing Optimization in Dynamic Software-defined Satellite-Terrestrial Integrated Networks
- Distributed Satellite-Terrestrial Cooperative Routing Strategy Based on Minimum Hop-Count Analysis in Mega LEO Satellite Constellation
- On-board Federated Learning for Satellite Clusters with Inter-Satellite Links
- Multi-layer Space Information Networks: Access Design and Softwarization
- A Comprehensive Survey on Orbital Edge Computing: Systems, Applications, and Algorithms
- Satellite Edge Artificial Intelligence with Large Models: Architectures and Technologies
- Cross-link Interference Modeling in 6G Millimeter Wave and Terahertz LEO Satellite Communications
- Collaborative Satellite Computing through Adaptive DNN Task Splitting and Offloading
- A Hybrid NOMA-OMA Scheme for Inter-plane Intersatellite Communications in Massive LEO Constellations
- Intelligent Task Management via Dynamic Multi-region Division in LEO Satellite Networks