Performances Study of PSK and ASK Modulation Technique under Atmospheric Turbulence in FSO Communication System

Esraa Al – Gazzi, Ekbal Ali, Assel Mohammed
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Abstract

downtime can be reduced because of the quick advancement of high-speed connection technology. It is also now possible to quickly establish a backup network in an emergency or crisis. The design of FSO systems for two types of digital modulation techniques is the primary focus of this work. An examination of the FSO link's performance in various channel conditions using various modulation techniques is conducted. This analytical mechanism can aid a modulation strategy for various channel conditions. The results indicated that PSK modification is stronger against atmospheric turbulence than ASK modification in terms of quality factor and signal-to-noise ratio (SNR). In addition, the values of received power, quality factor, and signal-to-noise ratio were higher in the case of atmospheric turbulence during rain than in the case of fog, followed by dust conditions. The systems can operate using adaptive optics and evaluate the system's performance in the presence of atmospheric turbulence in terms of signal quality, received power, and signal-to-noise ratio.
FSO 通信系统中大气湍流条件下 PSK 和 ASK 调制技术的性能研究
由于高速连接技术的快速发展,可以减少停机时间。现在还可以在紧急情况或危机中迅速建立备用网络。针对两种数字调制技术的 FSO 系统设计是这项工作的主要重点。本研究对使用各种调制技术的 FSO 链路在各种信道条件下的性能进行了分析。这种分析机制有助于针对各种信道条件制定调制策略。结果表明,就品质因数和信噪比(SNR)而言,PSK 调制比 ASK 调制更能抵御大气湍流。此外,在雨天的大气湍流情况下,接收功率、品质因数和信噪比的值高于雾天,其次是沙尘天气。该系统可使用自适应光学系统运行,并可从信号质量、接收功率和信噪比方面评估系统在大气湍流情况下的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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