论文标题

LEO卫星下行链路网络的覆盖范围分析:轨道几何学方法

Coverage Analysis of LEO Satellite Downlink Networks: Orbit Geometry Dependent Approach

论文作者

Lee, Junse, Noh, Song, Jeong, Sooyeob, Lee, Namyoon

论文摘要

具有巨型构造的低地球轨道(LEO)卫星网络可以提供全球覆盖范围,同时支持高数据库率。这种网络的覆盖范围性能高度取决于轨道几何参数,包括卫星高度和倾斜角。传统上,由于缺乏分析方法,基于仿真的覆盖范围分析主导。本文通过突出轨道几何参数为LEO卫星网络提供了一个新型的系统分析框架。具体而言,我们假设卫星位置根据一维泊松点过程将卫星位置放置在圆形轨道上。然后,我们根据轨道几何参数来得出卫星与固定用户在地球上的位置之间最近距离的分布。利用此分布,我们表征了单轨LEO网络的覆盖范围概率是网络几何参数的函数,并结合了小规模褪色效果。最后,我们将覆盖范围分析扩展到多轨网络,并验证利用多轨卫星网络的协同增益,从覆盖范围概率方面。提供仿真结果以验证所提出模型的数学推导和准确性。

The low-earth-orbit (LEO) satellite network with mega-constellations can provide global coverage while supporting the high-data rates. The coverage performance of such a network is highly dependent on orbit geometry parameters, including satellite altitude and inclination angle. Traditionally, simulation-based coverage analysis dominates because of the lack of analytical approaches. This paper presents a novel systematic analysis framework for the LEO satellite network by highlighting orbit geometric parameters. Specifically, we assume that satellite locations are placed on a circular orbit according to a one-dimensional Poisson point process. Then, we derive the distribution of the nearest distance between the satellite and a fixed user's location on the Earth in terms of the orbit-geometry parameters. Leveraging this distribution, we characterize the coverage probability of the single-orbit LEO network as a function of the network geometric parameters in conjunction with small and large-scale fading effects. Finally, we extend our coverage analysis to multi-orbit networks and verify the synergistic gain of harnessing multi-orbit satellite networks in terms of the coverage probability. Simulation results are provided to validate the mathematical derivations and the accuracy of the proposed model.

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