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On the Performances of th Best User Selection Scheme in Multiuser Diversity Free-Space Optical Systems Over Exponentiated Weibull Turbulence Channels

机译:指数威布尔湍流信道上多用户分集自由空间光学系统中最佳用户选择方案的性能研究

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摘要

The average bit error rate (ABER) and capacity of multiuser diversity free-space optical (FSO) systems with th best user selection scheme are investigated by considering atmospheric turbulence-induced fading. The atmospheric turbulence channel is modeled by the exponentiated Weibull distribution, and it can accurately predict the probability density function of the irradiance fluctuations in weak-to-strong turbulence regimes under all aperture averaging conditions. With the help of the Gauss–Laguerre quadrature rule, the analytical expression of ABER is derived and studied with different receiver aperture sizes, turbulence strength values, user numbers , and orders . Results show that, under moderate turbulence condition, the mitigation effect of aperture averaging for ABER degradation by decreasing or increasing is more significant than that of weak turbulence condition. The average capacity is then achieved on the basis of the second kind Stirling number and Meijer's G-function. The investigation on the average capacity shows that a higher capacity can be obtained in the strong turbulence regime than that in the weak turbulence regime, and this improvement is more significant with large receiver aperture size. Monte Carlo simulation and Romberg integration are first provided to verify the proposed analytical ABER and average capacity expressions, respectively. This paper benefits the design and development of multiuser FSO systems.
机译:通过考虑大气湍流引起的衰落,研究了具有最佳用户选择方案的多用户分集自由空间光(FSO)系统的平均误码率(ABER)和容量。大气湍流通道由指数威布尔分布建模,可以在所有孔径平均条件下准确预测弱到强湍流区辐照度波动的概率密度函数。借助高斯-拉格勒正交定律,可以推导并研究不同接收器孔径,湍流强度值,用户数量和阶次的ABER的解析表达式。结果表明,在中等湍流条件下,通过减小或增大孔径平均对ABER降解的缓解效果比弱湍流条件更显着。然后,基于第二类斯特林数和迈耶的G函数获得平均容量。对平均容量的研究表明,在强湍流状态下可以获得比在弱湍流状态下更高的容量,并且对于较大的接收器孔径,这种改进更为显着。首先提供蒙特卡罗模拟和Romberg积分来分别验证所提出的分析ABER和平均容量表达式。本文有益于多用户FSO系统的设计和开发。

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