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On the BER Performance of OOK FSO Links with Receivers’ Diversity and Time Jitter over Strong Turbulence Channels

机译:在强大的湍流通道上与接收器多样性和时间抖动的BER性能

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Free Space Optical (FSO) communications have increasingly emerged in the last decade because of their unparalleled, inherent advantages like the high data rate communications with minimal costs. However, the performance of FSO communications systems is severely limited due to numerous agents. One of the deteriorating contributors is the scintillation effect due to atmospheric turbulence, causing rapid fluctuations of the receiving signal’s intensity. Turbulence strength depends on the current weather conditions and can be estimated from many available statistical models proposed. Also, time jitter is another deteriorating contributor, which causes additional impairments to the link’s throughput due to an either early or late misdetection of the received optical pulse’s center. Especially inevitable, time jitter affects high data rate communications, where the corresponding detector’s time slot is quite short. One hopeful FSO performance improvement solution employs the receiver’s diversity technique. In this work new mathematical expressions for the estimation of the average BER performance of NRZ or RZ OOK FSO links with receivers’ diversity are derived. The strong atmospheric turbulence effect is modeled with K - distribution. In addition, time jitter effect is studied, for the first time to the best of the authors’ knowledge, with the generalized Gaussian distribution. Useful numerical results and interesting conclusion are also listed in this work.
机译:自由空间光学(FSO)通信在过去十年中越来越多地出现,因为它们是无与伦比的,固有的优势,如具有最低成本的高数据速率通信。然而,由于许多代理商,FSO通信系统的性能受到严重限制。其中一个劣化贡献者是由于大气湍流引起的闪烁效果,导致接收信号强度的快速波动。湍流强度取决于目前的天气条件,可以从提出的许多可用统计模型估计。此外,时间抖动是另一个劣化的贡献者,这导致链路吞吐量的额外损害导致接收到的光学脉冲中心的早期或晚期误差。特别是不可避免的,时间抖动会影响高数据速率通信,其中相应的检测器的时隙很短。一个有希望的FSO性能改进解决方案采用了接收器的多样性技术。在这项工作中,推导出用于估计NRZ或RZ的平均BER性能的新数学表达式与接收器分集的COOK FSO链路的平均性能。强大的大气湍流效果与K分布建模。此外,通过推广高斯分布,第一次研究了时间抖动效应,首次达到了作者的知识,具有广义高斯分布。在这项工作中也列出了有用的数值结果和有趣的结论。

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