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首页> 外文期刊>Journal of Lightwave Technology >Performance Analysis of Gamma–Gamma Fading FSO MIMO Links With Pointing Errors
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Performance Analysis of Gamma–Gamma Fading FSO MIMO Links With Pointing Errors

机译:具有指向错误的Gamma-Gamma衰落FSO MIMO链路性能分析

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The bit error rate (BER) performance of the free space optical (FSO) link suffers from the atmospheric turbulence. By employing additional transmit and receive apertures at the transmitter and receiver, respectively, the error rate of the FSO communication system can be significantly improved. However, the pointing errors (PEs), generated because of the building sway, have the potential to eradicate the benefits of the multiple transmit and/or receive apertures-based FSO communication system. Therefore, for a general and realistic study of the FSO multiple-input multiple-output (MIMO) system, the effect of PEs in the Gamma–Gamma (GG) fading atmospheric fluctuations is considered in this paper. We study two schemes for the FSO MIMO systems: 1) equal gain combining (EGC), and 2) maximal ratio combining (MRC). A new power series-based representation is proposed for the probability density function of the GG fading FSO links with PEs. This new series representation contains only the terms with exponent of the random variable (RV) as compared to the closed-form representation, which contains the Meijer-G function of the RV. Then, we derive the average BER for both combining schemes over the GG fading FSO links with PEs. By using the derived BER expressions, we derive the asymptotic BER for both schemes. The analytical diversity order and combining gains for both systems are also obtained. The effect of PEs over the performance of the schemes is analyzed under different scenarios and it is observed that the PEs significantly degrade the diversity of the FSO MIMO system. It is deduced by simulation and analysis that though the EGC scheme is simpler to implement in practice but the MRC scheme is more rugged to the large PEs.
机译:自由空间光(FSO)链路的误码率(BER)性能受大气湍流的影响。通过分别在发射器和接收器处采用附加的发射孔和接收孔,可以显着改善FSO通信系统的错误率。但是,由于建筑物晃动而产生的指向错误(PE)具有消除基于多重发射和/或接收孔径的FSO通信系统的好处的潜力。因此,为了对FSO多输入多输出(MIMO)系统进行一般而现实的研究,本文考虑了PE在Gamma-Gamma(GG)衰落大气波动中的影响。我们针对FSO MIMO系统研究了两种方案:1)等增益合并(EGC),以及2)最大比率合并(MRC)。提出了一种新的基于幂级数的表示形式,用于GG衰落FSO链路与PE的概率密度函数。与包含RV的Meijer-G函数的闭式表示相比,此新系列表示仅包含具有随机变量(RV)指数的项。然后,我们推导了在GG衰落FSO链路与PE上两种组合方案的平均BER。通过使用导出的BER表达式,我们导出了两种方案的渐近BER。还获得了两个系统的分析分集阶数和组合增益。在不同的情况下,分析了PE对方案性能的影响,并观察到PE大大降低了FSO MIMO系统的多样性。通过仿真和分析可以得出,尽管EGC方案在实践中更易于实现,但MRC方案更适合大型PE。

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