首页> 外文期刊>Russian physics journal >STATISTICAL ESTIMATES OF LIDAR SIGNALS REFLECTED FROM THE OCEAN BOTTOM, USING A LIDAR EQUIPPED WITH A PHOTODETECTOR ARRAY
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STATISTICAL ESTIMATES OF LIDAR SIGNALS REFLECTED FROM THE OCEAN BOTTOM, USING A LIDAR EQUIPPED WITH A PHOTODETECTOR ARRAY

机译:使用配备有光电探测器阵列的激光雷达,LIDAR信号的统计估计

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摘要

With the aim of obtaining preliminary estimates, the Monte Carlo method has been used to solve the nonstationary equation of laser sensing of an optically dense, complex, multicomponent aqueous medium by a monostatic lidar equipped with a photodetector array mounted on board an aircraft. The influence of the air-water interface, the contribution of multiple scattering of radiation by the water column, and reflection of the signal from the bottom are all taken into account. Estimates of the dependence of the power of the lidar signal recorded from the surface and the bottom have been obtained for different optical characteristics of the medium and brightness of the solar illumination. The field of view of the photodetector array is translated along the direction of flight of the aircraft with relatively low velocity. A combined image of the investigated space is obtained by joining together the sequentially taken rectangular images. Here, each pixel of the frame images distance and the sum of all these pixels gives a three-dimensional image of the ocean surface and bottom. Results of statistical simulation show that a lidar system for sensing the ocean water column using a detector array can be realized on a level that can justly be termed state-of-the-art. Under favorable conditions, it is possible to sense water depths up to 44 m.
机译:随着获得初步估计的目的,蒙特卡罗方法已经过去通过配备有安装在飞机上的光电探测器阵列的单体潮汐流的激光感测的激光感测的激光感测的非持久性方程。空气 - 水界面的影响,水柱辐射多次散射的贡献,以及来自底部的信号的反射都被考虑在内。已经获得了从表面和底部记录的LIDAR信号的依赖性的估计,用于不同的光学特性和太阳能照明的亮度的不同光学特性。光电探测器阵列的视野沿着飞行器的飞行方向,具有相对低的速度。通过将依次采集的矩形图像连接在一起获得研究的调查空间的组合图像。这里,帧图像距离的每个像素和所有这些像素的总和给出了海面和底部的三维图像。统计模拟结果表明,用于使用探测器阵列传感海洋水柱的激光雷达系统可以在可以依赖最先进的水平上实现。在有利的条件下,可以感测水深高达44米。

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