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Performance Analysis of Free-Space Optical Links Over Malaga (M) Turbulence Channels with Pointing Errors

机译:具有指向误差的马拉加(M)湍流通道上自由空间光链路的性能分析

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摘要

In this work, we present a unified performance analysis of a free-space optical (FSO) link that accounts for pointing errors and both types of detection techniques (i.e. intensity modulation/direct detection (IM/DD) as well as heterodyne detection). More specifically, we present unified exact closedform expressions for the cumulative distribution function, the probability density function, the moment generating function, and the moments of the end-to-end signal-to-noise ratio (SNR) of a single link FSO transmission system, all in terms of the Meijer’s G function except for the moments that is in terms of simple elementary functions. We then capitalize on these unified results to offer unified exact closed-form expressions for various performance metrics of FSO link transmission systems, such as, the outage probability, the scintillation index (SI), the average error rate for binary and M-ary modulation schemes, and the ergodic capacity (except for IM/DD technique, where we present closed-form lower bound results), all in terms of Meijer’s G functions except for the SI that is in terms of simple elementary functions. Additionally, we derive the asymptotic results for all the expressions derived earlier in terms of Meijer’s G function in the high SNR regime in terms of simple elementary functions via an asymptotic expansion of the Meijer’s G function. We also derive new asymptotic expressions for the ergodic capacity in the low as well as high SNR regimes in terms of simple elementary functions via utilizing moments. All the presented results are verified via computer-based Monte-Carlo simulations.
机译:在这项工作中,我们提出了对自由空间光学(FSO)链路的统一性能分析,该分析解决了指向错误和两种检测技术(即强度调制/直接检测(IM / DD)以及外差检测)的问题。更具体地说,我们为累积分布函数,概率密度函数,矩生成函数以及单链路FSO传输的端到端信噪比(SNR)的矩提供统一的精确闭式表达式。系统,除了用简单的基本函数表示的时刻以外,全部都用Meijer的G函数表示。然后,我们利用这些统一的结果为FSO链路传输系统的各种性能指标提供统一的精确闭式表达式,例如中断概率,闪烁指数(SI),二进制和M进制调制的平均错误率方案和遍历能力(IM / DD技术除外,在此我们给出了封闭形式的下界结果),所有这些均以Meijer的G函数表示,而SI则以简单的基本函数表示。此外,我们通过Meijer G函数的渐近展开,推导了早先在高SNR方案中根据Meijer G函数在简单基本函数方面导出的所有表达式的渐近结果。我们还通过利用矩,根据简单的基本函数,得出了在低信噪比和高信噪比状态下遍历容量的新渐近表达式。所有提出的结果均通过基于计算机的蒙特卡洛模拟进行了验证。

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