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Average achievable rate of spatial diversity MIMO-FSO over correlated Gamma–Gamma fading channels

机译:相关Gamma-Gamma衰落信道上空间分集MIMO-FSO的平均可达到速率

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This paper studies the average achievable rate (AAR) of spatial diversity multiple-input multiple-output (MIMO) free-space optical (FSO) communications over correlated Gamma-Gamma (G-G) fading channels. In particular, we derive the AAR for two different combining techniques at the receiver, namely equal gain combining (EGC) and maximal ratio combining (MRC). Based on atmospheric fading correlation analysis and by employing an approximation method for the sum of correlated G-G random variables (RVs), closed-form expressions for AAR are derived for the EGC scheme. For the case of the MRC technique, we first derive the joint probability distribution of correlated G-G RVs with the arbitrary correlation coefficient. The AAR is then computed based on the use of the moment generating function. Numerical results with practical channel correlation coefficients are presented to demonstrate the negative impact of channel correlation on the system performance. Monte Carlo simulations are also performed to validate the analytical results, and an excellent agreement between the analytical and simulation results is confirmed.
机译:本文研究了相关Gamma-Gamma(G-G)衰落信道上空间分集多输入多输出(MIMO)自由空间光(FSO)通信的平均可达到速率(AAR)。特别是,我们在接收机处针对两种不同的合并技术得出了AAR,即等增益合并(EGC)和最大比率合并(MRC)。基于大气衰落的相关性分析,并通过对相关的G-G随机变量(RVs)求和的近似方法,为EGC方案导出了AAR的闭式表达式。对于MRC技术,我们首先导出具有任意相关系数的相关G-G RV的联合概率分布。然后基于力矩生成函数的使用来计算AAR。给出具有实用信道相关系数的数值结果,以证明信道相关对系统性能的负面影响。还执行了蒙特卡洛模拟以验证分析结果,并确认了分析结果与模拟结果之间的极佳一致性。

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