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Near-end solution for lidar signals that includes a multiple-scattering component

机译:激光雷达信号的近端解决方案,包括多散射组件

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摘要

A variant of the near-end solution is presented that allows one to consider a multiple-scattering component in lidar measurements of distant clouds or dense smoke. It is assumed that the lidar signal, contaminated by multiple scattering, obeys a single-scattering lidar equation in which an additional term, which is related to the range-dependent ratio of a multiple-to-single-scattering component, is included. For the inversion, a brink solution is proposed that does not require an a priori selection of the extinction-to-backscatter ratio in the optically dense aerosol formation under investigation. The solution requires either knowledge of the multiple-to-single-scattering ratio (e.g., determined experimentally with a multiangle lidar) or the use of the analytical dependence of the multiple-to-single-scattering ratio on the aerosol optical depth. In the latter case, an iterative technique is used.
机译:提出了近端解决方案的一种变体,该解决方案允许在远距离云或浓烟的激光雷达测量中考虑多重散射分量。假设被多重散射污染的激光雷达信号服从单散射激光雷达方程,其中包括与多次散射分量与单次散射分量的范围相关比率有关的附加项。对于反演,提出了一种边缘解决方案,该解决方案不需要在研究中的光致密实气溶胶形成过程中预先选择消光/背向散射比。该解决方案需要了解多次散射比(例如,用多角度激光雷达通过实验确定),或者需要利用多次散射比对气溶胶光学深度的分析依赖性。在后一种情况下,使用迭代技术。

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