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Performance enhancement of free space optical communication system using beam-optimized serial relaying in saturated atmosphere with pointing errors

机译:在具有指向性误差的饱和气氛中使用经过光束优化的串行中继来增强自由空间光通信系统的性能

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In this paper, the performance improvement of a free space optical communication system with multi-hop and beam optimization has been studied. Novel closed-form expressions for the end-to-end average bit error rate, outage probability and average capacity of multi-hop free space communication system with decode-and-forward relaying are derived. Beam optimization is done using Nelder-Mead simplex algorithm. A composite channel model using atmospheric attenuation, turbulence and pointing errors is used to model the atmospheric impairments. The saturated atmospheric conditions are modeled by negative exponential channel model, and pointing error effects are considered by normalized jitter standard deviation parameter. The performance of the free space optical communication system in terms of end-to-end average bit error rate, outage probability and average channel capacity in saturated atmospheric turbulence conditions and pointing errors is significantly enhanced by using beam-optimized serial relaying with decode-and-forward transmission. The simulation results obtained by Monte Carlo simulation are in agreement with the results obtained from the closed-form expressions.
机译:本文研究了具有多跳和光束优化的自由空间光通信系统的性能改进。推导了具有解码转发中继的多跳自由空间通信系统的端到端平均误码率,中断概率和平均容量的新型闭式表达式。光束优化是使用Nelder-Mead单纯形算法完成的。使用大气衰减,湍流和指向误差的复合通道模型用于模拟大气损伤。通过负指数通道模型对饱和大气条件进行建模,并通过归一化的抖动标准偏差参数来考虑指向误差的影响。通过使用带有解码和解码功能的波束优化串行中继,可以大大提高自由空间光通信系统在饱和大气湍流条件下的端到端平均误码率,中断概率和平均信道容量以及指向误差方面的性能。前向传输。通过蒙特卡洛模拟获得的模拟结果与从封闭式表达式获得的结果一致。

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