Modeling and Analysis of Hybrid GEO-LEO Satellite Networks

Fuente: arXiv
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Autores principales: Jung, Dong-Hyun, Nam, Hongjae, Choi, Junil, Love, David J.
Formato: Preprint
Publicado: 2024
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author Jung, Dong-Hyun
Nam, Hongjae
Choi, Junil
Love, David J.
author_facet Jung, Dong-Hyun
Nam, Hongjae
Choi, Junil
Love, David J.
contents As the number of low Earth orbit (LEO) satellites rapidly increases, the consideration of frequency sharing or cooperation between geosynchronous Earth orbit (GEO) and LEO satellites is gaining attention. In this paper, we consider a hybrid GEO-LEO satellite network where GEO and LEO satellites are distributed according to independent Poisson point processes (PPPs) and share the same frequency resources. Based on the properties of PPPs, we first analyze satellite-visible probabilities, distance distributions, and association probabilities. Then, we derive an analytical expression for the network's coverage probability. Through Monte Carlo simulations, we verify the analytical results and demonstrate the impact of system parameters on coverage performance. The analytical results effectively estimate the coverage performance in scenarios where GEO and LEO satellites cooperate or share the same resource.
format Preprint
id arxiv_https___arxiv_org_abs_2410_14902
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Modeling and Analysis of Hybrid GEO-LEO Satellite Networks
Jung, Dong-Hyun
Nam, Hongjae
Choi, Junil
Love, David J.
Information Theory
As the number of low Earth orbit (LEO) satellites rapidly increases, the consideration of frequency sharing or cooperation between geosynchronous Earth orbit (GEO) and LEO satellites is gaining attention. In this paper, we consider a hybrid GEO-LEO satellite network where GEO and LEO satellites are distributed according to independent Poisson point processes (PPPs) and share the same frequency resources. Based on the properties of PPPs, we first analyze satellite-visible probabilities, distance distributions, and association probabilities. Then, we derive an analytical expression for the network's coverage probability. Through Monte Carlo simulations, we verify the analytical results and demonstrate the impact of system parameters on coverage performance. The analytical results effectively estimate the coverage performance in scenarios where GEO and LEO satellites cooperate or share the same resource.
title Modeling and Analysis of Hybrid GEO-LEO Satellite Networks
topic Information Theory
url https://arxiv.org/abs/2410.14902