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Incremental Diversity Order for Characterization of FSO Communication Systems Over Lognormal Fading Channels

机译:逻辑正式衰落通道上FSO通信系统表征的增量分集序

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Free space optical (FSO) communication systems experience atmospheric turbulence-induced fading, which is typically modelled by lognormal distribution. Since the decreasing rate of error probability over lognormal fading channels does not converge to a finite value, the conventional definition of diversity order yields infinity and does not provide any insight into system design. In this letter, we propose the so-called incremental diversity order (IDO), which is defined as the incremental change in the decreasing rate of bit error rate (BER) on a log-log scale. As an example, we consider multiple-input multiple-output (MIMO) FSO system over lognormal turbulence channels. We derive a novel closed-form BER expression in terms of Lambert-W function and obtain IDO as a function of the number of laser sources, the number of photodetectors and the variance of the log-amplitude coefficient. We further present numerical results to validate the derived BER expression and associated IDO.
机译:自由空间光学(FSO)通信系统经历大气湍流诱导的衰落,其通常由Lognormal分布建模。由于误差衰减通道上的误差概率的降低不会收敛到有限值,因此分集顺序的传统定义产生无限远,并且不提供对系统设计的任何洞察力。在这封信中,我们提出了所谓的增量分集顺序(IDO),该顺序被定义为日志日志刻度上的误码率(BER)降低的增量变化。作为示例,我们考虑通过逻辑正态湍流通道的多输入多输出(MIMO)FSO系统。我们在Lambert-W的函数方面推出了一种新颖的闭合形式BER表达,并获得IDO作为激光源的数量,光电探测器的数量和记录幅度系数的方差。我们进一步提出了数值结果来验证派生的BER表达和相关的IDO。

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