Optical communications in turbulence: a tutorial

IF 1.1 4区 工程技术 Q4 OPTICS Optical Engineering Pub Date : 2023-12-01 DOI:10.1117/1.oe.63.4.041207
Larry B. Stotts, Larry C. Andrews
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Abstract

We provide a tutorial on how to create link budgets and bit error rate (BER) and probability of fade calculations for optical communications systems designed to operate in the turbulent channel. It reviews the characterization models necessary for either incoherent or coherent free space optical communications uplink, downlink, and horizontal system analyses in the turbulent channel. Beam wander, scintillation, and receiver noise variance as well as pointing and tracking effects were included in this paper. Comparisons among these models, computer simulations and field measurements are provided throughout the paper. Good agreement is shown among all. An example analysis was provided using this information. The conclusion is that no matter whether the system is incoherent or coherent and/or which signaling format is used, the scintillation index will peg the BER to constant value at high signal-to-noise ratio well above the desired value. Other turbulence mitigation techniques must be employed to get the desired system performance.
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湍流中的光通信:教程
我们将介绍如何为设计在湍流信道中运行的光通信系统创建链路预算、误码率(BER)和衰落概率计算。它回顾了在湍流信道中进行非相干或相干自由空间光通信上行、下行和水平系统分析所需的特征模型。本文包括光束漂移、闪烁、接收机噪声方差以及指向和跟踪效应。本文对这些模型、计算机模拟和现场测量结果进行了比较。结果表明三者之间存在良好的一致性。利用这些信息提供了一个分析示例。结论是,无论系统是非相干还是相干和/或使用哪种信令格式,闪烁指数都会使误码率在高信噪比时达到恒定值,远远高于期望值。必须采用其他湍流缓解技术才能获得理想的系统性能。
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来源期刊
Optical Engineering
Optical Engineering 工程技术-光学
CiteScore
2.70
自引率
7.70%
发文量
393
审稿时长
2.6 months
期刊介绍: Optical Engineering publishes peer-reviewed papers reporting on research and development in optical science and engineering and the practical applications of known optical science, engineering, and technology.
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