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Quasi-analytical determination of noise-induced error limits in lidar retrieval of aerosol backscatter coefficient by the elastic, two-component algorithm

机译:弹性两成分算法在激光雷达探测气溶胶反向散射系数中噪声引起的误差极限的准分析确定

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摘要

The elastic, two-component algorithm is the most common inversion method for retrieving the aerosol backscatter coefficient from ground- or space-based backscatter lidar systems. A quasi-analytical formulation of the statistical error associated to the aerosol backscatter coefficient caused by the use of real, noise-corrupted lidar signals in the two-component algorithm is presented. The error expression depends on the signal-to-noise ratio along the inversion path and takes into account "instantaneous" effects, the effect of the signal-to-noise ratio at the range where the aerosol backscatter coefficient is being computed, as well as "memory" effects, namely, both the effect of the signal-to-noise ratio in the cell where the inversion is started and the cumulative effect of the noise between that cell and the actual cell where the aerosol backscatter coefficient is evaluated. An example is shown to illustrate how the "instantaneous" effect is reduced when averaging the noise-contaminated signal over a number of cells around the range where the inversion is started.
机译:弹性的两成分算法是从地面或基于空间的后向散射激光雷达系统中检索气溶胶后向散射系数的最常用的反演方法。提出了由两分量算法中使用真实的,噪声破坏的激光雷达信号引起的与气溶胶反向散射系数相关的统计误差的拟分析公式。误差表达式取决于沿反转路径的信噪比,并考虑了“瞬时”效应,正在计算气溶胶反向散射系数的范围内的信噪比效应,以及“记忆”效应,即开始反转的单元中的信噪比效应和该单元与气溶胶反向散射系数被评估的实际单元之间的噪声累积效应。示出了一个示例以说明当在开始反转的范围附近的多个单元上对噪声污染的信号进行平均时如何减小“瞬时”效应。

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