Probability of error performance of free space optical systems in severe atomspheric turbulence channels

H. Shaban, S. Aziz, M. Aly
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引用次数: 5

Abstract

Atmospheric turbulence causes degradation in the performance of the freespace optical (FSO) transmission. This turbulence is referred to as scintillation. To mitigate this effect, a multiple input multiple output (MIMO) system is employed. This paper investigates the use of multiple lasers and multiple aperture receivers in severe atmos pheric turbulence when binary pulse position modulation (BPPM)) is employed. First, single input multiple output(SIMO) system using BPPM technique is investigated with equal gain combining (EGC), selection combining (SC), and maximal ratio combining (MRC) diversity schemes. A closed form for the probability of error has been derived for both SC and MRC techniques, as well as Monte Carlo simulations. Then, a MI MO system for both zero forcing (ZF) equalizer and minimum mean square error (MMSE) equalizer is used. Finally, a comparison between different diversity techniques and linear equalizers is carried out.
严重大气湍流通道中自由空间光学系统误差性能的概率
大气湍流会导致自由空间光传输性能的下降。这种乱流被称为闪烁。为了减轻这种影响,采用了多输入多输出(MIMO)系统。本文研究了采用双脉冲位置调制(BPPM)的多激光器和多孔径接收机在严重大气湍流中的应用。首先,研究了基于BPPM技术的单输入多输出(SIMO)系统,分别采用等增益组合(EGC)、选择组合(SC)和最大比组合(MRC)分集方案。对于SC和MRC技术,以及蒙特卡罗模拟,已经导出了误差概率的封闭形式。然后,采用了零强迫均衡器(ZF)和最小均方误差均衡器(MMSE)的MI - MO系统。最后,对不同的分集技术和线性均衡器进行了比较。
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