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用于处理激光雷达回波的稳定解析反演解。

Stable analytical inversion solution for processing lidar returns.

作者信息

Klett J D

出版信息

Appl Opt. 1981 Jan 15;20(2):211-20. doi: 10.1364/AO.20.000211.

Abstract

A simple analytical method is presented that shows some potential for application to the problem of extracting attenuation and backscatter coefficients in an inhomogeneous atmosphere from the return signal of a monostatic single-wavelength lidar system. The method assumes the validity of the single-scattering lidar equation and a power law relationship between backscatter and attenuation. For optical depths greater than unity the inversion method can be applied in principle using only information contained in the signal itself. In contrast to a well-known related analytical inversion solution, the new solution form is shown to be stable with respect to perturbations in the signal, the postulated relationship between backscatter and attenuation, and the assumed or estimated boundary value of attenuation.

摘要

提出了一种简单的分析方法,该方法在从单基地单波长激光雷达系统的回波信号中提取非均匀大气中的衰减系数和后向散射系数问题上显示出一定的应用潜力。该方法假定单散射激光雷达方程有效,且后向散射与衰减之间存在幂律关系。对于光学深度大于1的情况,原则上仅使用信号本身包含的信息就可以应用反演方法。与一种著名的相关分析反演解相比,新的解形式在信号扰动、后向散射与衰减之间的假定关系以及衰减的假定或估计边界值方面表现出稳定性。

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