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Modeling and Analysis of Downlink Communications in a Heterogeneous LEO Satellite Network

Authors
Choi, Chang-Sik
Issue Date
2024
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
coverage probability; Cox point process; Heterogeneous LEO satellite networks; stochastic geometry; user access technology
Citation
IEEE Transactions on Wireless Communications, pp 1 - 1
Pages
1
Journal Title
IEEE Transactions on Wireless Communications
Start Page
1
End Page
1
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/32749
DOI
10.1109/TWC.2024.3351876
ISSN
1536-1276
1558-2248
Abstract
Low Earth Orbit (LEO) satellite networks connect millions of devices on Earth and offer various services, such as data communications, remote sensing, and data harvesting. As the number of services increases, LEO satellite networks will continue to grow, and many LEO satellite network operators will share the same spectrum resources. We aim to examine the coexistence of such a future heterogeneous LEO satellite network by proposing a tractable spatial model and analyzing the basic performance of downlink communications. We model a heterogeneous LEO satellite network as Cox point processes, ensuring satellites are located on various orbits. Then, we analyze two different access technologies for such a heterogeneous satellite network: closed access and open access. For both cases, we derive the coverage probability and prove that the coverage probability of the open access scenario outperforms that of the closed access, and this coverage enhancement applies to all users. By providing essential network performance statistics as key distributional parameters and by presenting the fact that the Cox point process approximates a forthcoming future constellation with slight variation, the developed framework and analysis will serve as a tractable instrument to design, evaluate, and optimize heterogeneous LEO satellite networks with numerous constellations. IEEE
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