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Analysis of M-QAM Modulated Underwater Wireless Optical Communication System for Reconfigurable UOWSNs Employed in River Meets Ocean Scenario

机译:河流中采用的可重构UOWSN的M-QAM调制水下无线光通信系统的分析符合海景

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摘要

In this paper, the bit error rate (BER) performance of underwater wireless optical communication system employing with M-ary quadrature amplitude modulation is proposed for underwater optical wireless sensor networks (UOWSN) in river meets ocean scenario. The underwater channel degradation effects such as absorption, scattering and oceanic turbulence is taken into account. The oceanic turbulence is modelled by the Gamma-Gamma distribution. The first time, we proposed re-configurable UOWSN for the real time scenario of the river meets the ocean and derived the novel closed form analytical BER expressions of the proposed system over Gamma-Gamma turbulence with attenuation effects. The impact of oceanic turbulence parameters such as the variations of temperature, kinetic energy, viscosity, salinity, link range and the water type of system performance is investigated for river water, mixed water (river and ocean water) and ocean water. The proposed system and the related analysis will be highly useful in UOWSN and the Internet of underwater thing (IoUT) applications.
机译:在本文中,提出了采用M-ARY正交幅度调制的水下无线光通信系统的误码率(BER)性能,用于河水中的水下光学无线传感器网络(UOWSN)达到海洋场景。考虑到水下信道降解诸如吸收,散射和海洋湍流。海洋湍流由γ-γ分布进行建模。我们第一次提出了重新配置的UOWSN,为河流的实时场景达到海洋,并通过衰减效应来衍生出所提出的系统的新型封闭式分析BER表达。对河水,混合水(河流和海水)和海洋水进行研究,研究了海洋湍流参数等温度,动能,粘度,盐度,盐度,链路范围和水类型的影响。所提出的系统和相关分析将在UORSN和水下的互联网上非常有用(IOUT)应用。

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