论文标题
使用随机几何形状的低地球卫星星座的下行链路覆盖范围和速率分析
Downlink Coverage and Rate Analysis of Low Earth Orbit Satellite Constellations Using Stochastic Geometry
论文作者
论文摘要
由于低地球轨道(LEO)卫星通信系统正在越来越受欢迎,因此需要新的理论方法来研究此类网络的整个性能。这是因为以前已应用于分析卫星系统的确定性和基于位置的模型通常仅限于支持模拟。在本文中,无论实际卫星的位置及其服务区域的几何形状如何,我们都会为下行链路覆盖范围概率和平均数据率提供分析表达式。我们的解决方案源于随机几何形状,该几何形状将通用网络抽象成均匀的二项点过程。然后,我们应用了所提出的模型,我们研究网络的性能是关键星座设计参数的函数。最后,为了更精确地将理论建模拟合到实际的确定性星座上,我们引入了有效数量的卫星数量,以补偿卫星在不同纬度上的实际不均匀分布。除了得出精确的网络性能指标外,该研究还揭示了为未来大规模LEO星座选择设计参数的几种准则,例如频率通道和高度的数量。
As low Earth orbit (LEO) satellite communication systems are gaining increasing popularity, new theoretical methodologies are required to investigate such networks' performance at large. This is because deterministic and location-based models that have previously been applied to analyze satellite systems are typically restricted to support simulations only. In this paper, we derive analytical expressions for the downlink coverage probability and average data rate of generic LEO networks, regardless of the actual satellites' locality and their service area geometry. Our solution stems from stochastic geometry, which abstracts the generic networks into uniform binomial point processes. Applying the proposed model, we then study the performance of the networks as a function of key constellation design parameters. Finally, to fit the theoretical modeling more precisely to real deterministic constellations, we introduce the effective number of satellites as a parameter to compensate for the practical uneven distribution of satellites on different latitudes. In addition to deriving exact network performance metrics, the study reveals several guidelines for selecting the design parameters for future massive LEO constellations, e.g., the number of frequency channels and altitude.