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在存在指向误差的情况下,对具有部分中继选择的干扰受限和无干扰双跳混合射频/自由空间光通信系统进行统一性能分析。

Unified performance analysis of interference-limited and interference-free dual-hop mixed RF/FSO systems with partial relay selection under pointing errors.

作者信息

Ding Junrong, Kang Dongpeng, Tan Liying, Ma Jing

出版信息

Opt Express. 2024 Jan 15;32(2):1998-2014. doi: 10.1364/OE.511059.

Abstract

This paper investigates the performance of interference-limited and interference-free dual-hop mixed radio frequency (RF)/free space optical (FSO) systems with partial relay selection (PRS) for the variable-gain (VG) amplify-and-forward (AF) relaying scenario. We concentrate on the generalized channel model that not only describes different application scenarios but also allows a more accurate description of the channel characteristics. Specifically, the PRS-aided RF link is modeled by the κ-μ shadowed distribution, and the FSO link is expressed in terms of Fox's H-function, which unifies Fisher-Snedecor , Gamma-Gamma (GG), and Malága () distributions for atmospheric turbulence along with pointing errors and detection modes. The interference signals at the selected relay are modeled by independent identically κ-μ shadowed distributions. Using our analytical framework, new unified closed-form expressions for the cumulative distribution function (CDF), the average bit error rate (BER), and the ergodic capacity are derived. Additionally, we provide asymptotic expressions of the average BER at high SNR. The analysis quantifies the impact of co-channel interference, pointing errors, number of relays, and rank of the selected relay on the considered system's performance. Finally, numerical results and Monte Carlo (MC) simulations are presented to confirm the effectiveness of the derived expressions. Note that our results provide a generalized framework for comprehensive studies of this kind of systems.

摘要

本文研究了具有部分中继选择(PRS)的可变增益(VG)放大转发(AF)中继场景下,干扰受限和无干扰的双跳混合射频(RF)/自由空间光(FSO)系统的性能。我们专注于广义信道模型,该模型不仅描述了不同的应用场景,还能更准确地描述信道特性。具体而言,PRS辅助的RF链路由κ-μ阴影分布建模,FSO链路用福克斯H函数表示,它统一了费希尔-斯内德科尔分布、伽马-伽马(GG)分布和马拉加分布,用于考虑大气湍流以及指向误差和检测模式。所选中继处的干扰信号由独立同分布的κ-μ阴影分布建模。利用我们的分析框架,推导出了累积分布函数(CDF)、平均误码率(BER)和遍历容量的新的统一闭式表达式。此外,我们还给出了高信噪比下平均BER的渐近表达式。该分析量化了同信道干扰、指向误差、中继数量和所选中继的秩对所考虑系统性能的影响。最后,给出了数值结果和蒙特卡罗(MC)仿真,以证实所推导表达式的有效性。请注意,我们的结果为这类系统的综合研究提供了一个广义框架。

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