利用 FSO 通信的多 HAPS 空-空-地网络:性能分析。

Applied Optics Pub Date : 2024-02-27 DOI:10.1364/ao.515707
D. Singh, S. R., Anh Pham
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引用次数: 0

摘要

由于现有一代无线通信不可能跟上当前流量爆炸和新兴应用的步伐,全世界都在进行下一代(即第六代,6G)无线技术的研究和开发。在这方面,预计采用自由空间光学(FSO)通信的空-空-地(SAG)网络可提供每秒万亿比特的吞吐量,以支持各种潜在的 6G 应用。然而,FSO 通信容易受到大气湍流、指向误差和光束闪烁效应的影响。为了克服严重的大气效应,我们提出了一种基于多高空平台站(HAPS)的 SAG 网络,并采用 HAPS 选择方案。对于所提出的系统,我们推导出了具有指向误差的马拉加分布上的中断概率、平均符号错误率 (SER)、遍历容量和中断容量的闭式表达式。此外,还推导出了中断概率、平均符号错误率和中断容量的渐近表达式,以便从实用角度加深对系统的理解。数值结果表明,基于多 HAPS 的 FSO 系统比现有的基于 HAPS 的 FSO 系统性能更好。
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Multiple HAPS-based space-air-ground network with FSO communication: a performance analysis.
Due to the fact that the existing generation of wireless communication cannot possibly keep up with the current traffic explosion and emerging applications, research and development on next-generation (i.e., sixth generation, 6G) wireless technologies is being carried out worldwide. In this regard, it is anticipated that the space-air-ground (SAG) network with free space optics (FSO) communication can provide the terabits per second throughput necessary to sustain various potential 6G applications. However, FSO communications are susceptible to atmospheric turbulence, pointing errors, and beam scintillation effects. To remedy the severe atmospheric effects, we propose a multiple high-altitude platform station (HAPS)-based SAG network with a HAPS selection scheme. For the proposed system, we have derived the closed-form expressions for outage probability, average symbol error rate (SER), ergodic capacity, and outage capacity over Málaga distribution with pointing errors. Further, the asymptotic expressions for outage probability, average SER, and outage capacity were derived to enhance the comprehension of the system from a practical standpoint. It is observed from the numerical results that the multiple HAPS-based FSO system performs better than the existing HAPS-based FSO systems.
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