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A study on the effect of scattering properties of marine particles on underwater optical wireless communication channel characteristics

机译:海洋颗粒的散射特性对水下光无线通信信道特性的影响研究

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Numerical simulations using a more sophisticated Monte-Carlo technique show that the channel characteristics of an underwater optical wireless communication (UOWC) system are sensitive to angular scattering properties of marine particles (i.e., shape of the phase function), especially in the forward angles (0°-90°). Results of this study include power budget and channel impulse response estimated using different phase functions (Petzold, OTHG, TTHG and SS) and other optical parameters for the cases of harbor waters. Comparison of these results establishes the importance of using an accurate phase function in channel modeling of UOWC systems. Furthermore, comparison with the model based on Beer's law establishes the advantage of considering the finite probability of receiving scattered photons at the receiver end. Our finding reveals that estimation of power loss considering extinction coefficient as in Beer's law severely underestimates the received power, leading to shorter communication range especially in turbid harbor waters.
机译:使用更先进的蒙特卡洛技术进行的数值模拟表明,水下光学无线通信(UOWC)系统的信道特性对海洋粒子的角散射特性(即相位函数的形状)特别是在前向角( 0°-90°)。这项研究的结果包括针对港口水域情况使用不同相位函数(Petzold,OTHG,TTHG和SS)以及其他光学参数估算的功率预算和信道脉冲响应。这些结果的比较确立了在UOWC系统的通道建模中使用准确的相位函数的重要性。此外,与基于比尔定律的模型进行比较,建立了考虑在接收器端接收散射光子的有限概率的优势。我们的发现表明,按照比尔定律,根据消光系数估算功率损耗会严重低估接收功率,从而导致通信距离缩短,尤其是在混浊的港口水域中。

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