E2E Physical Layer and Link Analysis for High-Throughput Satellite Optical Communication

Veronica Spirito;Ernesto Ciaramella;Giulio Cossu
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Abstract

Satellite optical communications will revolutionize global high-speed connectivity. In this paper, we carry out a comprehensive evaluation of end-to-end (E2E) Wavelength Division Multiplexing (WDM)-Free Space Optical Communication (FSOC) systems to establish high-performance Earth-GEO links using a semi-analytical tool. We present a novel method to accurately compute the divergence of a truncated and obscured beam, typical of Cassegrain telescopes; this model is instrumental to optimize the beam divergence with Pointing Error (PE) and beam wander. The effects of beam wander, scintillation, and PE are first individually investigated to derive the required margins for different outage probabilities (OPs), followed by an assessment of Adaptive Optics (AO) benefits and limitations. Furthermore, we comprehensively assess the uplink and downlink systems, exploiting for the first time an innovative and fully analytical closed-form expression to describe the combined three statistical effects. Finally, the full system analysis is carried out in the challenging scenario of strong turbulence, at various elevation angles and OP targets. By considering both coherent and non-coherent systems adopted from fiber communications, we determine the transmitter power and the maximum achievable throughput.
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高通量卫星光通信的端到端物理层和链路分析
卫星光通信将彻底改变全球高速连接。在本文中,我们使用半分析工具对端到端(E2E)波分复用(WDM)自由空间光通信(FSOC)系统进行了全面评估,以建立高性能的地球-地球轨道链路。我们提出了一种新的方法来精确计算截断和遮挡光束的散度,典型的卡塞格伦望远镜;该模型有助于优化具有指向误差(PE)和光束漂移的光束发散。首先分别研究了光束漂移、闪烁和PE的影响,得出了不同中断概率(OPs)所需的裕度,然后评估了自适应光学(AO)的优点和局限性。此外,我们全面评估了上行链路和下行链路系统,首次利用创新的、完全分析的封闭形式表达式来描述三种统计效应的组合。最后,在各种仰角和OP目标的强湍流挑战性场景下进行了完整的系统分析。通过考虑光纤通信中采用的相干和非相干系统,确定了发射机功率和最大可实现吞吐量。
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