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Principal component analysis applied to multiwavelength lidar aerosol backscatter and extinction measurements

机译:主成分分析应用于多波长激光雷达气溶胶反向散射和消光测量

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The use of powerful Raman backscatter lidars enables one to measure the stratospheric aerosol extinction profile independently of the backscatter, thereby obtaining additional information to aid in retrieving the physical characteristics of the sampled aerosol. We used principal component analysis to construct a self-consistent method for the retrieval of aerosol bulk physical and optical properties from multiwavelength elastic and/or inelastic Raman backscatter Lidar signals. The procedure is applied to synthetic and actual lidar signals. We found that aerosol surface area and volume can be usefully estimated and that the use of Raman-derived extinction data leads to a notable improvement in the accuracy of the estimations. (C) 1997 Optical Society of America.
机译:使用功能强大的拉曼反向散射激光雷达,可以独立于反向散射来测量平流层气溶胶的消光曲线,从而获得更多信息,以帮助获取所采样气溶胶的物理特性。我们使用主成分分析构建了一种自一致的方法,用于从多波长弹性和/或非弹性拉曼反向散射激光雷达信号中检索气溶胶的物理和光学特性。该程序适用于合成和实际激光雷达信号。我们发现,可以有效地估算气溶胶的表面积和体积,并且使用拉曼光谱法得出的消光数据可以显着提高估算的准确性。 (C)1997年美国眼镜学会。

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