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利用后向散射系数和光学厚度廓线确定颗粒物消光系数廓线和柱积分激光雷达比。

Determination of the particulate extinction-coefficient profile and the column-integrated lidar ratios using the backscatter-coefficient and optical-depth profiles.

作者信息

Kovalev Vladimir A, Hao Wei Min, Wold Cyle

机构信息

Forest Service, U.S. Department of Agriculture, Fire Sciences Laboratory, Missoula, Montana 59808, USA.

出版信息

Appl Opt. 2007 Dec 20;46(36):8627-34. doi: 10.1364/ao.46.008627.

Abstract

A new method is considered that can be used for inverting data obtained from a combined elastic-inelastic lidar or a high spectral resolution lidar operating in a one-directional mode, or an elastic lidar operating in a multiangle mode. The particulate extinction coefficient is retrieved from the simultaneously measured profiles of the particulate backscatter coefficient and the particulate optical depth. The stepwise profile of the column-integrated lidar ratio is found that provides best matching of the initial (inverted) profile of the optical depth to that obtained by the inversion of the backscatter-coefficient profile. The retrieval of the extinction coefficient is made without using numerical differentiation. The method reduces the level of random noise in the retrieved extinction coefficient to the level of noise in the inverted backscatter coefficient. Examples of simulated and experimental data are presented.

摘要

一种新方法被认为可用于反演从组合式弹性-非弹性激光雷达或单向模式下运行的高光谱分辨率激光雷达,或多角度模式下运行的弹性激光雷达获取的数据。从同时测量的颗粒物后向散射系数和颗粒物光学深度剖面中反演颗粒物消光系数。发现柱积分激光雷达比的阶梯状剖面能使光学深度的初始(反演)剖面与通过反演后向散射系数剖面得到的剖面实现最佳匹配。消光系数的反演无需使用数值微分。该方法将反演得到的消光系数中的随机噪声水平降低到反演后向散射系数中的噪声水平。给出了模拟和实验数据的示例。

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