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Research on Characteristics of Forward Scattering Light Based on Monte Carlo Simulation

机译:基于蒙特卡罗模拟的前向散射光的特性研究

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In ocean inspection, laser system has the advantages of high precision, high efficiency and being enacted on the temperature or salinity of seawater. It has been developed greatly in recent years. But it is not yet a mature inspection technique because of the complicacy of oceanic channel and water-scattering. There are many problems to be resolved. In this paper, the work principle and of general developing situation of ocean lidar techniques are introduced first. The author points out that the intense scattering and absorbing acting on light by water is the bottleneck to limit the development of ocean lidar. The Monet Carlo method is adopted finally to be a basal way of study in this paper after discussing several method of studying the light transmitting in seawater. Based on the theory of photon transmitted in the seawater and the particularity of underwater target detecting, we have studied the characters of laser scattering on underwater target surface and spatial and temporal characters of forward scattering. Starting from the particularity of underwater target detecting, a new model to describe the characters of laser scattering is presented. Based on this model, we developed the fast arithmetic, which enhanced the computation speed greatly and the precision was also assured. It made detecting real-time realizable. Basing on the Monte Carlo simulation and starting from the theory of photon transmitted in the seawater, we studied how the parameters of water quality and other systemic parameters affect the light forward scattering through seawater at spatial and temporal region and provided the theoretical sustentation of enhancing the SNR and operational distance.
机译:在海洋检查中,激光系统具有高精度,高效率和颁布的海水温度或盐度优势。近年来它已经发展得很大。但由于海峡和水散射的复杂性,它尚未成为成熟的检查技术。有许多问题要解决。本文首先介绍了海洋激光雷达技术的工作原理和一般发展形势。作者指出,水的强烈散射和吸收用水作用是限制海洋激光器发展的瓶颈。在讨论海水中的透光的几种方法之后,最终采用了Monet Carlo方法是本文的基础研究方法。基于在海水和水下目标检测的特殊性发送光子的理论,我们已经研究了水下目标表面和前向散射的空间和时间字符激光散射的字符。从水下目标检测的特殊性开始,提出了一种描述激光散射特征的新模型。基于该模型,我们开发了快速算术,大大提高了计算速度,并确保了精度。它使检测实时可实现。基于Monte Carlo仿真和从海水传播的光子理论开始,我们研究了水质和其他全身参数的参数如何影响空间和颞区的海水的光向散射,并提供了增强的理论贪图SNR和操作距离。

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