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Validation of the Raman lidar algorithm for quantifying aerosol extinction

机译:拉曼激光雷达算法对气溶胶消光定量的验证

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摘要

To calculate aerosol extinction from Raman lidar data, it is necessary to evaluate the derivative of a molecular Raman signal with respect to range. The typical approach taken in the lidar community is to make an a priori assumption about the functional behavior of the data to calculate the derivative. It has previously been shown that the use of the chi-squared technique to determine the most likely functional behavior of the data prior to actually calculating the derivative eliminates the need for making a priori assumptions. Here that technique is validated through numerical simulation and by application to a significant body of Raman lidar measurements. In general, we show that the chisquared approach for evaluating extinction yields lower extinction uncertainty than traditional techniques. We also use the technique to study the feasibility of developing a general characterization of the extinction uncertainty that could permit the uncertainty in Raman lidar aerosol extinction measurements to be estimated accurately without the need of the chi-squared technique.
机译:为了从拉曼激光雷达数据计算气溶胶消光,必须评估分子拉曼信号相对于范围的导数。激光雷达社区中采用的典型方法是对数据的功能行为进行先验假设,以计算导数。先前已经表明,在实际计算导数之前使用卡方技术确定数据的最可能的功能行为消除了进行先验假设的需要。在这里,该技术通过数值模拟和应用于大量拉曼激光雷达测量得到了验证。总的来说,我们证明了用于评估灭绝的卡方方法所产生的灭绝不确定性要低于传统技术。我们还使用该技术来研究开发消光不确定性的一般特征的可行性,该通用特征可允许在不需要卡方技术的情况下准确估算拉曼激光雷达气溶胶消光测量中的不确定性。

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