Coverage Analysis of Large-Scale HAPS Networks Using Directional Beams

IF 5.7 2区 计算机科学 Q1 ENGINEERING, AEROSPACE IEEE Transactions on Aerospace and Electronic Systems Pub Date : 2025-03-17 DOI:10.1109/TAES.2025.3551282
Zhengying Lou;Baha Eddine Youcef Belmekki;Mohamed-Slim Alouini
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Abstract

High-altitude platform stations (HAPS) are pivotal in next-generation wireless networks for reducing core network burdens and enabling cost-effective communication. In this article, we propose a spherical stochastic geometry-based analytical framework for the coverage performance evaluation of HAPS networks. Considering the significant influence of directional antenna gain on interference evaluation, we analyze coverage performance under a general channel model that accommodates various beam patterns. Analytical expressions of the uplink and downlink coverage probabilities in cellular and cell-free networks are provided, respectively, and their accuracy are verified by the Monte Carlo simulation. Furthermore, the influences of network-level and physical-level parameters on coverage probability are studied. Finally, several factors that align with the analytical framework of this article are discussed.
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利用定向波束的大规模HAPS网络覆盖分析
高空平台站(HAPS)在下一代无线网络中至关重要,可以减少核心网络的负担,实现经济高效的通信。在本文中,我们提出了一个基于球面随机几何的分析框架来评估HAPS网络的覆盖性能。考虑到定向天线增益对干扰评估的重要影响,我们分析了在适应各种波束方向图的通用信道模型下的覆盖性能。分别给出了蜂窝网络和无蜂窝网络中上行和下行覆盖概率的解析表达式,并通过蒙特卡罗仿真验证了其准确性。此外,还研究了网络级和物理级参数对覆盖概率的影响。最后,讨论了与本文分析框架一致的几个因素。
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来源期刊
CiteScore
7.80
自引率
13.60%
发文量
433
审稿时长
8.7 months
期刊介绍: IEEE Transactions on Aerospace and Electronic Systems focuses on the organization, design, development, integration, and operation of complex systems for space, air, ocean, or ground environment. These systems include, but are not limited to, navigation, avionics, spacecraft, aerospace power, radar, sonar, telemetry, defense, transportation, automated testing, and command and control.
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