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Diversity Gain and Outage Probability for MIMO Free-Space Optical Links with Misalignment

机译:具有错位的MIMO自由空间光链路的分集增益和中断概率

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摘要

A novel statistical channel model for multiple-input multiple-output (MIMO) free-space optical (FSO) communication systems impaired by atmospheric and misalignment fading is developed. A slow-fading channel model is considered and the outage probability is derived as a performance measure. The diversity gain defined as the signal-to-noise ratio (SNR) exponent at high SNR is analyzed. Interestingly in the presence of misalignment fading the diversity gain depends only on the misalignment variance and is independent of the number of transmitters M and receivers N. Increasing the number of transmitters and receivers only results in a lower probability of outage for a given SNR, however, the rate of change is unaffected. Contrary to this case, the diversity gain of MIMO FSO systems in the presence of atmospheric fading and no misalignment is shown to be proportional to the number of transmitters and receivers, in particular the product MN.
机译:开发了一种新颖的统计信道模型,用于大气和失准衰落损害的多输入多输出(MIMO)自由空间光(FSO)通信系统。考虑慢衰落信道模型,并推导中断概率作为性能度量。分析了分集增益,该分集增益定义为高SNR时的信噪比(SNR)指数。有趣的是,在存在未对准衰落的情况下,分集增益仅取决于未对准方差,并且与发射器M和接收器N的数量无关。增加发射器和接收器的数量只会导致给定SNR发生中断的可能性降低,但是,变化率不受影响。与这种情况相反,在存在大气衰落且没有未对准的情况下,MIMO FSO系统的分集增益显示为与发射器和接收器,尤其是乘积MN的数量成比例。

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