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Serial Free-Space Optical Relaying Communications Over Gamma-Gamma Atmospheric Turbulence Channels

机译:伽马-伽马大气湍流通道上的串行自由空间光中继通信

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摘要

In this paper, a study on the end-to-end performance of multihop free-space optical wireless systems over turbulence-induced fading channels, modeled by the gamma-gamma distribution, is presented. Our analysis is carried out for systems employing amplify-and-forward channel-state-information-assisted or fixed-gain relays. To assess the statistical properties of the end-to-end signal-to-noise ratio for both considered systems, we derive novel closed-form expressions for the moment-generating function, the probability density function, and the cumulative distribution function of the product of rational powers of statistically independent squared gamma-gamma random variables. These statistical results are then applied to studying the outage probability and the average bit error probability of binary modulation schemes. Also, for the case of channel-state-information-assisted relays, an accurate asymptotic performance analysis at high SNR values is presented. Numerical examples compare analytical and simulation results, verifying the correctness of the proposed mathematical analysis.
机译:在本文中,对以伽马-伽马分布为模型的多跳自由空间光学无线系统在湍流引起的衰落信道上的端到端性能进行了研究。我们的分析是针对采用放大和转发通道状态信息辅助或固定增益继电器的系统进行的。为了评估两个系统的端到端信噪比的统计特性,我们推导了乘积的矩生成函数,概率密度函数和累积分布函数的新颖的闭式表达式统计独立的平方伽玛-伽玛随机变量的有理数。然后将这些统计结果应用于研究二进制调制方案的中断概率和平均误码率。此外,对于通道状态信息辅助继电器,还提出了在高SNR值下的精确渐近性能分析。数值示例比较了分析结果和模拟结果,验证了所提出的数学分析的正确性。

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