Performance Analysis of Serial and Parallel Amplify-and-Forward Relaying Coherent OFDM FSO System over Exponential Weibull Atmospheric Turbulence Channel

Qianqian Wang, Haibo Wang, Yi Wang
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Abstract

This paper proposes a coherent orthogonal frequency division multiplexing (OFDM) free space optical (FSO) communication system model consisting of parallel channel state information (CSI)-assisted amplify-and-forward (AF) relays over Exponential Weibull (EW) atmospheric attenuation channel. Using quadrature amplitude modulation (QAM) as a subcarrier mapping mode for OFDM signals. Considering the joint effects of path loss, pointing errors and atmospheric turbulence, the closed-form expressions of the Meijer G form of moment generating function (MGF), probability density function (PDF), and cumulative distribution function (CDF) are derived. Using these results, the closed-form expressions for the lower bounds of the outage probability and the symbol error rate (SER) of the proposed system are derived using Meijer’s G-function. In addition, the influence of atmospheric turbulence intensity, number of subcarriers, mapping coefficient and other important factors on outage performance and SER are analyzed by simulations. The simulation results show that the relaying technology can increase the link range and improve the performance of the FSO communication systems.
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指数威布尔大气湍流信道上串并联放大前向中继相干OFDM FSO系统性能分析
本文提出了一种基于指数威布尔大气衰减信道的相干正交频分复用(OFDM)自由空间光(FSO)通信系统模型,该系统由并行信道状态信息(CSI)辅助放大转发(AF)中继组成。利用正交调幅(QAM)作为OFDM信号的子载波映射模式。考虑路径损失、指向误差和大气湍流的共同影响,导出了矩产生函数(MGF)、概率密度函数(PDF)和累积分布函数(CDF)的Meijer G形式的封闭表达式。在此基础上,利用Meijer的g函数导出了系统的中断概率下界和符号错误率下界的封闭表达式。此外,通过仿真分析了大气湍流强度、子载波数、映射系数等重要因素对中断性能和SER的影响。仿真结果表明,中继技术可以增加链路距离,提高FSO通信系统的性能。
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