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On the Performance of Free-Space Optical Systems over Generalized Atmospheric Turbulence Channels with Pointing Errors

机译:具有指向误差的广义大气湍流通道上自由空间光学系统的性能

摘要

Generalized fading has been an imminent part and parcel of wireless communications. It not only characterizes the wireless channel appropriately but also allows its utilization for further performance analysis of various types of wireless communication systems. Under the umbrella of generalized fading channels, a unified performance analysis of a free-space optical (FSO) link over the Malaga (M) atmospheric turbulence channel that accounts for pointing errors and both types of detection techniques (i.e. indirect modulation/direct detection (IM/DD) as well as heterodyne detection) is presented. Specifically, unified exact closed-form expressions for the probability density function (PDF), the cumulative distribution function (CDF), the moment generating function (MGF), and the moments of the end-to-end signal-to-noise ratio (SNR) of a single link FSO transmission system are presented, all in terms of the Meijer's G function except for the moments that is in terms of simple elementary functions. Then capitalizing on these unified results, unified exact closed-form expressions for various performance metrics of FSO link transmission systems are offered, such as, the outage probability (OP), the higher-order amount of fading (AF), the average error rate for binary and M-ary modulation schemes, and the ergodic capacity (except for IM/DD technique, where closed-form lower bound results are presented), all in terms of Meijer's G functions except for the higher-order AF that is in terms of simple elementary functions. Additionally, the asymptotic results are derived for all the expressions derived earlier in terms of the 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. Furthermore, new asymptotic expressions for the ergodic capacity in the low as well as high SNR regimes are derived in terms of simple elementary functions via utilizing moments. All the presented results are verified via computer-based Monte-Carlo simulations.ududBesides addressing the pointing errors with zero boresight effects as has been addressed above, a unified capacity analysis of a FSO link that accounts for nonzero boresight pointing errors and both types of detection techniques (i.e. heterodyne detection as well as IM/DD) is also addressed. Specifically, an exact closed-form expression for the moments of the end-to-end SNR of a single link FSO transmission system is presented in terms of well-known elementary functions. Capitalizing on these new moments expressions, approximate and simple closed-form results for the ergodic capacity at high and low SNR regimes are derived for lognormal (LN), Rician-LN (RLN), and M atmospheric turbulences. All the presented results are verified via computer-based Monte-Carlo simulations.ududBased on the fact that FSO links are cost-effective, license-free, and can provide even higher bandwidths compared to the traditional radio-frequency (RF) links, the performance analysis of a dual-hop relay system composed of asymmetric RF and FSO links is presented. This is complemented by the performance analysis of a dual-branch transmission system composed of a direct RF link and a dual-hop relay composed of asymmetric RF and FSO links. The performance of the later scenario is evaluated under the assumption of the selection combining (SC) diversity and the maximal ratio combining (MRC) schemes. RF links are modeled by Rayleigh fading distribution whereas the FSO link is modeled by a unified GG fading distribution. More specifically, in this work, new exact closed-form expressions for the PDF, the CDF, the MGF, and the moments of the end-to-end SNR are derived. Capitalizing on these results, new exact closed-form expressions for the OP, the higher-order AF, the average error rate for binary and M-ary modulation schemes, and the ergodic capacity are offered.ududCognitive radio networks (CRN) have also proved to improve the performance of wireless communication systems and hence based on this, the hybrid system analyzed above is extended with CRN technology wherein the outage and error performance analysis of a dual-hop transmission system composed of asymmetric RF channel cascaded with a FSO link is presented. For the RF link, an underlay cognitive network is considered where the secondary users share the spectrum with licensed primary users. Indoor femtocells act as a practical example for such networks. Specifically, it is assumed that the RF link applies power control to maintain the interference at the primary network below a predetermined threshold. While the RF channel is modeled by the Rayleigh fading distribution, the FSO link is modeled by a unified Gamma-Gamma turbulence distribution. The FSO link accounts for pointing errors and both types of detection techniques (i.e. heterodyne detection as well as IM/DD). With this model, a new exact closed-form expression is derived for the OP and the error rate of the end-to-end SNR of these systems in terms of the Meijer's G function and the Fox's H functions under amplify-and-forward relay schemes. All new analytical results are verified via computer-based Monte-Carlo simulations and are illustrated by some selected numerical results.
机译:通用衰落已成为无线通信的重要组成部分。它不仅可以适当地表征无线信道,还可以将其用于各种类型的无线通信系统的进一步性能分析。在广义衰落信道的保护下,对马拉加(M)大气湍流信道上的自由空间光学(FSO)链路进行了统一的性能分析,考虑了指向误差和两种检测技术(即间接调制/直接检测( IM / DD)以及外差检测)。具体来说,是针对概率密度函数(PDF),累积分布函数(CDF),矩生成函数(MGF)和端对端信噪比的矩的统一精确闭式表达式(给出了单链路FSO传输系统的SNR),所有方面均以Meijer的G函数表示,除了矩以简单的基本函数表示。然后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(OP),高阶衰落量(AF),平均错误率对于二进制和M元调制方案,以及遍历容量(IM / DD技术除外,在IM / DD技术中,它给出了封闭形式的下限结果),均以Meijer的G函数表示,除了高阶AF表示为简单的基本功能。此外,通过梅杰G函数的渐近展开,针对高信噪比条件下根据简单基函数在梅杰G函数的早期导出的所有表达式得出了渐近结果。此外,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情况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。 ud ud除了如上所述解决了具有零视轴影响的指向误差外,还对FSO链路进行了统一的容量分析,这解决了非零视轴指向误差,并且类型的检测技术(即外差检测以及IM / DD)也得到了解决。具体而言,根据众所周知的基本函数,给出了单链路FSO传输系统的端到端SNR时刻的精确封闭式表达式。利用这些新的矩表达式,可以得出对数正态(LN),Rician-LN(RLN)和M大气湍流在高和低SNR情况下遍历容量的近似和简单封闭形式结果。所有呈现的结果均通过基于计算机的蒙特卡洛模拟进行了验证。 ud ud基于FSO链路具有成本效益,无需许可证且与传统射频(RF)相比可提供更高带宽的事实链接,介绍了由不对称RF和FSO链接组成的双跳中继系统的性能分析。通过对由直接RF链接组成的双分支传输系统和由非对称RF和FSO链接组成的双跳中继的性能分析进行补充。在选择组合(SC)分集和最大比率组合(MRC)方案的假设下评估后一种情况的性能。 RF链路通过瑞利衰落分布建模,而FSO链路则通过统一的GG衰落分布建模。更具体地说,在这项工作中,导出了PDF,CDF,MGF和端到端SNR矩的新的精确闭式表达式。利用这些结果,可以提供OP的新精确闭式表达式,高阶AF,二进制和M元调制方案的平均错误率以及遍历容量。 ud ud认知无线电网络(CRN)还已经证明可以改善无线通信系统的性能,因此在此基础上,上面分析的混合系统采用CRN技术进行了扩展,其中对由不对称RF通道与FSO级联组成的双跳传输系统的中断和错误性能进行了分析链接出现。对于RF链路,考虑了底层认知网络,其中辅助用户与许可的主要用户共享频谱。室内毫微微小区充当此类网络的实际示例。具体地,假设RF链路应用功率控制以将主要网络处的干扰维持在预定阈值以下。通过瑞利衰落分布对射频信道进行建模,而通过统一的伽马-伽马湍流分布对FSO链路进行建模。 FSO链接说明了指向错误和两种检测技术(即外差检测以及IM / DD)。有了这个模型,在放大转发方案下,根据Meijer的G函数和Fox的H函数,针对这些系统的OP和端到端SNR的误码率,导出了一个新的精确封闭式表达式。所有新的分析结果均通过基于计算机的蒙特卡洛模拟进行了验证,并通过一些选定的数值结果进行了说明。

著录项

  • 作者

    Ansari Imran Shafique;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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