基于不同大气湍流下各种 FSO 信道模型的 PDF 比较

Mahdi A. Atiyah, L. F. Abdulameer, Gaurav Narkhedel
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引用次数: 0

摘要

近年来,高速、低复杂度的无线通信环境变得越来越重要。自由空间光学(FSO)已经成为在这种高频谱无线设置中提供设备之间直接连接的有前途的解决方案。但是,FSO通信容易受到天气引起的信号波动的影响,从而导致接收器的衰落和信号弱。为了减轻这些挑战的影响,已经提出了几种数学模型来描述从弱到强的大气湍流的转变,包括瑞利、对数正态、Málaga、Nakagami-m、k分布、威布尔分布、负指数分布、逆高斯分布、G-G分布和Fisher-Snedecor F分布。本文广泛地研究和分析了控制FSO信道的不同概率密度函数(pdf),考虑了各种信道模型。本文旨在全面了解如何使用不同的pdf有效地对FSO信道进行建模。准确的建模对于设计能够在潜在环境条件下最佳运行的FSO系统至关重要。在系统设计中,选择合适的PDF模型对确定FSO信道的性能起着至关重要的作用。由于有大量可用的PDF模型,本研究旨在确定最有效的PDF模型,用于FSO信道建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PDF Comparison based on Various FSO Channel Models under Different Atmospheric Turbulence
Recently, wireless communication environments with high speeds and low complexity have become increasingly essential. Free-space optics (FSO) has emerged as a promising solution for providing direct connections between devices in such high-spectrum wireless setups. However, FSO communications are susceptible to weather-induced signal fluctuations, leading to fading and signal weakness at the receiver. To mitigate the effects of these challenges, several mathematical models have been proposed to describe the transition from weak to strong atmospheric turbulence, including Rayleigh, lognormal, Málaga, Nakagami-m, K-distribution, Weibull, Negative-Exponential, Inverse-Gaussian, G-G, and Fisher-Snedecor F distributions. This paper extensively studies and analyses different probability density functions (PDFs) that govern the FSO channel, considering various channel models. This paper aims to comprehensively understand how FSO channels can be effectively modeled using different PDFs. Accurate modeling is crucial for designing FSO systems that can operate optimally under potential environmental conditions. Selecting the appropriate PDF model plays a crucial role in determining the FSO channel's performance during system design. With a multitude of PDF models available, this study aims to identify the most effective PDF model to be employed in FSO channel modeling.  
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