DF中继辅助水下可见光通信系统性能分析

Monika Jain, N. Sharma, Akash Gupta, D. Rawal, P. Garg
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引用次数: 2

摘要

水下无线光通信在海洋学研究、近海勘探、气候监测、战术监视等方面发挥着重要作用,引起了军事、工业和科研界的广泛关注。本文提出了一种混合卫星-水下可见光通信(UWVLC)译码转发(DF)协同系统,通过卫星建立水下场景与陆地区域之间的连接,用于海洋监测和通信。卫星与浮船(FV)之间的链路采用阴影衰落信道建模,UWVLC链路采用混合指数-广义伽玛(EGG)分布表征。特别地,对于双跳卫星- uwvlc系统,我们用广义Fox-H函数导出了平均误码率(BER)的精确封闭表达式。此外,分析了气泡水平、温度梯度和含盐量等参数对系统性能的影响,以验证所提出系统模型的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Analysis of DF Relaying Assisted Underwater Visible Light Communication System
Underwater optical wireless communication plays an important role in the oceanography research, offshore exploration, climate monitoring, tactical surveillance and has attracted interest of military, industry, scientific and research community. In this paper, mixed satellite-underwater visible light communication (UWVLC) decode and forward (DF) cooperative system is proposed to help establish the connectivity between underwater scenario with the terrestrial regions via satellite for both oceanic monitoring as well as communication. The link between satellite and floating vessel (FV) is modeled by Shadowed-Rician fading channel and the UWVLC link is characterized by the mixture Exponential-Generalized Gamma (EGG) distribution. In particular, for the dual-hop satellite-UWVLC system, we derive the exact closed-form expressions for the average bit error rate (BER) in terms of a generalized Fox-H function. Furthermore, performance of the system is analyzed for various parameters such as air bubble levels, temperature gradient and saline level of water to validate the feasibility of the proposed system model.
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