On the Performance Analysis of Multi-Hop Hybrid FSO/RF Systems Using DPSK-SIM Over Gamma-Gamma Turbulence Channel

Hailay TEKLEHAIMANOT BELAY, Hui Zhao, Andrews ALLOTEI OKINE
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Abstract

This paper presents a hard switching decode and forward multihop hybrid free-space optical and radio frequency (FSO/RF) system. We aim to get better performance by changing modulation. The FSO channel is modeled using Gamma-Gamma distribution under IM/DD with Differential Phase Shift Keying Subcarrier Intensity Modulation (DPSK-SIM) scheme. The RF channel is modeled using Nakagami-m distribution. We derive a closed-form expression for the outage probability of the multi-hop FSO link using DPSK-SIM and consider the system performance under various haze weather conditions, including the impact of the number of hops, pointing error, and link distance. Finally, the performance of the DPSK-SIM is compared with the performance of phase-shift keying (PSK) modulation. The outcomes confirm that the DPSK-SIM scheme improves under different haze weather conditions, pointing error displacement (jitter), and hop to hop link distance. CCS CONCEPTS • Hardware → Integrated circuits; Interconnect; Photonic and optical interconnect.
基于DPSK-SIM的多跳FSO/RF混合系统在Gamma-Gamma湍流信道上的性能分析
提出了一种硬交换译码和转发多跳自由空间光/射频(FSO/RF)混合系统。我们的目标是通过改变调制来获得更好的性能。采用差分相移键控子载波强度调制(DPSK-SIM)方案,在IM/DD下对FSO信道进行了Gamma-Gamma分布建模。射频信道采用Nakagami-m分布建模。我们使用DPSK-SIM导出了多跳FSO链路中断概率的封闭表达式,并考虑了各种雾霾天气条件下的系统性能,包括跳数、指向误差和链路距离的影响。最后,将DPSK-SIM的性能与相移键控(PSK)调制的性能进行比较。结果证实了DPSK-SIM方案在不同雾霾天气条件下、指向误差位移(抖动)和跳间链路距离下都有改善。•硬件→集成电路;互连;光子和光学互连。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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