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Enhancement of FSO communications links under complex environment

机译:在复杂环境下增强FSO通信链接

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摘要

Free space optical communication is a line-of-sight (LOS) technology that uses lasers to provide optical bandwidth connections. Potential disturbance arising from the weather condition is one of the most effective factors that influence the bi-directional free space optics (FSO) performance. The complex weather condition in the Middle East region and Arabian Gulf has been dominated by dust storms activities. Dust storms directly affect the characteristics of FSO and consequently lead to an increase in the bit error rate (BER) and deterioration Q-factor to bad levels due to the high attenuation factor. In this research, the authors compare the differences between two bi-directional FSOs. One is the traditional link, and the other has been developed to enhance the system performance under the dust storms condition. The proposed design consists of dual FSO channels, and each one includes erbium-doped fiber amplifier (EDFA) optical amplifiers. This design has demonstrated the proficiency in addressing the attenuation that occurs due to weather stickers. The results prove there is an improvement in performance by measuring the Q-factor. In addition, BER can be significantly improved, and further communicating distance can be achieved by utilizing 1550 nm with multiple channels and EDFA.
机译:自由空间光通信是一种视线(LOS)技术,它使用激光来提供光带宽连接。天气条件引起的潜在干扰是影响双向自由空间光学(FSO)性能的最有效因素之一。中东地区和阿拉伯湾的复杂天气条件主要由沙尘暴活动主导。沙尘暴直接影响FSO的特性,并由于高衰减因子而导致误码率(BER)的增加和Q因子恶化到不良水平。在这项研究中,作者比较了两个双向FSO之间的差异。一个是传统的链接,另一个是为了增强沙尘暴条件下的系统性能而开发的。提议的设计包括双FSO通道,每个通道都包含掺ped光纤放大器(EDFA)光学放大器。该设计已证明可以很好地解决由于天气因素引起的衰减。结果证明,通过测量Q因子可以改善性能。此外,可以显着改善BER,并通过利用具有多个通道和EDFA的1550 nm来实现进一步的通信距离。

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