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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Performance Analysis of Free Space Optical Networks Using the Beta-Average Recursive Estimator
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Performance Analysis of Free Space Optical Networks Using the Beta-Average Recursive Estimator

机译:使用β平均递归估计器的自由空间光网络性能分析

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摘要

The present paper aims to investigate and analyze the performance of a point-to-point optical network under a free-space optical (FSO) communication system. Free-space optical communication is a sophisticated technique that has been employed as a channel model of optical wireless communication to transfer large amounts of data at high speeds. However, two important issues, that could affect the source of the FSO link, have been added. The first one is related to chromatic dispersion which is attributed to the chirping phenomenon of the optical signal; the second issue concerns the secondary jamming power that can be generated by some Radio Frequencies from base stations. It is important to note that the effects of atmospheric turbulence, misalignment fading, and atmospheric attenuation as well as geometric losses were also taken into account. The purpose of this research work is to overcome these effects, in order to increase the data transmission rate from 1.25 to 50 Gbps in the proposed system. Consequently, a very efficient solution is suggested to correct these problems and to make the FSO link more reliable using the Beta-Average Recursive Estimator. In addition, the numerical results obtained are presented for the purpose of validating our proposal through the evaluation of the performance of a transmission link in terms of the bit error rate and Q-factor. In the end, the resulting conclusions are listed, explained and discussed.
机译:本文旨在在自由空间光学(FSO)通信系统下调查和分析点对点光网络的性能。自由空间光通信是一种复杂的技术,该技术已经被用作光无线通信的信道模型,以便以高速传输大量数据。但是,已经添加了两个可能影响FSO链接来源的两个重要问题。第一个与色散相关,归因于光学信号的啁啾现象;第二个问题涉及可以由基站的一些无线电频率产生的二次干扰力。重要的是要注意,还考虑了大气湍流,未对准衰落和大气衰减以及几何损失的影响。本研究工作的目的是克服这些影响,以便在所提出的系统中增加1.25到50 Gbps的数据传输速率。因此,建议纠正这些问题的非常有效的解决方案,并使FSO链路使用β平均递归估计器更可靠。另外,为了在误码率和Q系数方面评估传输链路的性能来验证我们的提案,提出了所获得的数值结果。最后,列出并讨论了所产生的结论。

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