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On the ASER performance of amplify-and-forward relaying MIMO/FSO systems using SC-QAM signals over log-normal and gamma-gamma atmospheric turbulence channels and pointing error impairments

机译:在逻辑正常和伽马 - 伽马大气湍流通道上使用SC-QAM信号的放大和前进中继MIMO / FSO系统的构图性能和指向误差损伤

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摘要

In this work, we analyse pointing error effects on the performance of amplify-and-forward (AF) relaying multiple-input multiple-output (MIMO) free-space optical (FSO) communication system employing sub-carrier quadrature amplitude modulation (SC-QAM) signal over log-normal and gamma-gamma distributed atmospheric turbulence channels. We study the pointing error effects by taking into account the influence of beam-width, aperture size and jitter variance on the average symbol error rate (ASER), which is derived in closed-form expressions of MIMO/FSO and SISO/FSO systems. In addition, the number of relaying stations is taken into account in the statistical model of the combined channel including atmospheric loss, atmospheric turbulence and pointing error impairments. The numerical results show that by combining AF relaying stations and MIMO/FSO configurations, the link length can be extended because the transmitted power is reduced according to the amplifier gain. Moreover, the performance of AF relaying MIMO/FSO systems is better than that of AF relaying SISO/FSO systems at the same link length.
机译:在这项工作中,我们分析了对扩大和前进(AF)中继的性能的指示误差效应多输入多输入多输出(MIMO)自由空间光学(FSO)通信系统采用子载波正交幅度调制(SC- QAM)信号通过逻辑正常和伽马 - 伽马分布式大气湍流通道。我们考虑到光束宽度,孔径​​大小和抖动差异对平均符号错误率(ASER)的影响,从而研究指向误差效果,该符号错误率(ASER)衍生在MIMO / FSO和SISO / FSO系统的闭合表达式中。此外,在组合通道的统计模型中考虑了中继站的数量,包括大气损耗,大气湍流和指示误差损伤。数值结果表明,通过组合AF中继站和MIMO / FSO配置,可以扩展链路长度,因为根据放大器增益减小了透射功率。此外,AF中继MIMO / FSO系统的性能优于同一链路长度的AF中继SISO / FSO系统。

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