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Analytical performance evaluation of a multiple subcarrier modulated FSO communication system with coherent optical receiver under strong atmospheric turbulence

机译:具有相干光接收器的多个子载波调制FSO通信系统的分析性能评价在强大的大气湍流下的相干光学接收器

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Optical communication through Free-Space termed as FSO system became popular in recent days as a possible alternative to solve the bottleneck of connectivity problem. But atmospheric turbulence induced fading may severely degrade the performances of FSO communication system. We developed an analytical approach here to evaluate the performances of FSO communication system in respect of carrier to noise ratio and bit error rate with RF subcarrier modulation considering the strong atmospheric turbulence effect and the effect is modeled as gamma-gamma distribution. An analytical expression is developed to find carrier to noise ratio (CNR) by considering the turbulence effect at the coherent optical receiver output. Results are analyzed inform of average CNR, BER and power penalty taking into account the turbulence effect for a certain BER for different system parameters like variance of turbulence, link distance, local oscillator power etc. It is found that at a data rate of 10 Gbps with number of subcarrier 4, the power penalty at a BER of 10-9 is 6dB for a link distance of 3.6 Km.
机译:由于FSO系统最近几天被称为FSO系统的光学通信是解决连接问题瓶颈的可能性。但大气湍流诱导的衰落可能严重降低FSO通信系统的性能。我们在此开发了一种分析方法,以评估FSO通信系统的性能,以考虑强大的大气湍流效应以及效果为伽马 - 伽马分布建模的RF子载波频率和钻头误差率。通过考虑相干光接收器输出的湍流效应,开发了分析表达以找到载波与噪声比(CNR)。结果分析了INFOR通知平均CNR,BER和权力罚款,考虑到某种BER的不同系统参数的湍流效应,如湍流,链路距离,本地振荡器电源等方差。它发现,以10 Gbps的数据速率随着子载波的数量4,10 -9 的BER的功率损失为6dB,连杆距离为3.6公里。

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