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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Underwater Wireless Optical Communication Channel Modeling and Performance Evaluation using Vector Radiative Transfer Theory
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Underwater Wireless Optical Communication Channel Modeling and Performance Evaluation using Vector Radiative Transfer Theory

机译:矢量辐射传输理论的水下无线光通信信道建模与性能评估

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This paper presents the modeling of an underwater wireless optical communication channel using the vector radiative transfer theory. The vector radiative transfer equation captures the multiple scattering nature of natural water, and also includes the polarization behavior of light. Light propagation in an underwater environment encounters scattering effect creating dispersion which introduces inter-symbol-interference to the data communication. The attenuation effect further reduces the signal to noise ratio. Both scattering and absorption have adverse effects on underwater data communication. Using a channel model based on radiative transfer theory, we can quantify the scattering effect as a function of distance and bit rate by numerical Monte Carlo simulations. We also investigate the polarization behavior of light in the underwater environment, showing the significance of the cross-polarization component when the light encounters more scattering.
机译:本文介绍了使用矢量辐射传输理论对水下无线光通信信道的建模。矢量辐射传递方程式捕获了天然水的多重散射性质,还包括光的偏振行为。水下环境中的光传播会遇到散射效应,从而产生色散,从而将符号间干扰引入数据通信。衰减效果进一步降低了信噪比。散射和吸收都对水下数据通信产生不利影响。使用基于辐射传输理论的信道模型,我们可以通过数值蒙特卡洛模拟来量化散射效应与距离和比特率的关系。我们还研究了水下环境中光的偏振行为,显示了当光遇到更多散射时交叉偏振分量的重要性。

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