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Capacity of optical wireless communication system over correlated log-normal channels

机译:相关对数正常通道的光无线通信系统的容量

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The performance of an optical wireless communication (OWC) system subjected to atmospheric turbulence induced fading can be significantly improved by using spatial diversity reception. Diversity reception also suffers from correlation among diversity branches due to insufficient spacing between multiple photodetectors at the receiver. In this paper, average channel capacity of OWC system employing maximal ratio combing (MRC) and equal gain combining (EGC) diversity reception with correlated diversity branches is evaluated using a simple expression based on point estimate. A weak atmospheric turbulence condition known to be modeled by log-normal distribution is considered. In addition, the impact of correlation is also investigated considering identical as well as non-identical turbulence induced fading among diversity branches. This analysis reveals that the channel capacity decreases with the increase in correlation coefficient and impact of fading correlation is higher in case of identically distributed diversity branches as compared to non-identically distributed branches. Validity of the analysis is demonstrated with the results obtained using Monte-carlo simulation.
机译:通过使用空间分集接收可以显着提高经受大气湍流感应衰落的光无线通信(OWC)系统的性能。由于接收器的多个光电探测器之间的间隔不足,多样性接收也遭受了多样性分支之间的相关性。在本文中,使用基于点估计的简单表达式来评估采用最大比率梳理(MRC)和相等增益组合(EGC)分集(EGC)分集接收的OWC系统的平均信道容量。考虑已知已知通过对数正态分布建模的弱大气湍流条件。此外,还考虑了相关的相关性以及多相分支之间的非相同湍流诱导的不相同湍流。该分析表明,与非相同分布分支相比,相关系数的相关系数增加,随着不同分布的分支的情况下,在相同的分布分集的情况下,越来越多的相关系数的影响较高。使用Monte-Carlo模拟获得的结果证明了分析的有效性。

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