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Modelling of radiative transfer by the Monte Carlo method and solving the inverse problem based on a genetic algorithm according to experimental results of aerosol sensing on short paths using a femtosecond laser source

机译:根据飞秒激光源在短路径上进行气溶胶感测的实验结果,使用蒙特卡洛方法对辐射传递进行建模并基于遗传算法解决反问题

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摘要

We consider the algorithms that implement a broadband ('multiwave') radiative transfer with allowance for multiple (aerosol) scattering and absorption by main atmospheric gases. In the spectral range of 0.6-1 mu m, a closed numerical simulation of modifications of the supercontinuum component of a probing femtosecond pulse is performed. In the framework of the algorithms for solving the inverse atmospheric-optics problems with the help of a genetic algorithm, we give an interpretation of the experimental backscattered spectrum of the supercontinuum. An adequate reconstruction of the distribution mode for the particles of artificial aerosol with the narrow-modal distributions in a size range of 0.5-2 mm and a step of 0.5 mm is obtained.
机译:我们考虑了实现宽带(“多波”)辐射传输的算法,并考虑了主要大气气体的多种(气溶胶)散射和吸收。在0.6-1μm的光谱范围内,进行了探测飞秒脉冲的超连续谱分量的修正的封闭数值模拟。在借助遗传算法解决大气逆光学问题的算法框架中,我们对超连续谱的实验背向散射光谱进行了解释。对于具有在0.5-2mm的尺寸范围和0.5mm的步幅中的窄模式分布的人造气雾剂颗粒,获得了适当的重构模式。

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