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Application of statistical methods to the determination of slope in lidar data

机译:统计方法在激光雷达数据斜率确定中的应用

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Assumptions made in the analysis of both Raman lidar measurements of aerosol extinction and differential absorption lidar (DIAL) measurements of an absorbing species are tested. Statistical analysis techniques are used to enhance the estimation of aerosol extinction and aerosol extinction error that is usually handled using a linear model. It is determined that the most probable extinction value can differ from that of the linear assumption by up to 10% and that differences larger than 50% can occur in the calculation of extinction error. Ignoring error in the number density alters the calculated extinction by up to 3% and that of extinction error by up to 10%. The preceding results were obtained using the least-squares technique. The least-squares technique assumes that the data being regressed are nor-really distributed. However, the quantity that is usually regressed in aerosol extinction and DIAL calculations is not normally distributed. A technique is presented that allows the required numerical derivative to bo determined by regressing only normally distributed data. The results from this technique are compared with the usual procedure. The same concerns raised here regarding appropriate choice of a model in the context of aerosol extinction calculations should apply to DIAL calculations of absorbing species such as water vapor or ozone as well because the numerical derivative that is required is identical. OCIS codes: 280.1100, 280.3640, 280.1910.
机译:测试了对气溶胶消光的拉曼激光雷达测量和吸收物质的差分吸收激光雷达(DIAL)测量的分析假设。统计分析技术用于增强对气溶胶消光和气溶胶消光误差的估计,这通常使用线性模型来处理。已确定最可能的消光值与线性假设的最大差异可能高达10%,并且在消光误差的计算中可能会出现大于50%的差异。忽略数字密度的错误会导致计算的消光变化最多改变3%,而消光误差的变化最多改变10%。先前的结果是使用最小二乘技术获得的。最小二乘技术假定正在回归的数据是非正态分布的。但是,通常在气溶胶熄灭和DIAL计算中回归的量不是正态分布的。提出了一种技术,该技术允许仅通过回归正态分布的数据来确定所需的数值导数。将该技术的结果与常规过程进行比较。由于在气溶胶消光计算中对模型的适当选择,此处引起的相同关注也应适用于吸收水蒸气或臭氧等吸收物质的DIAL计算,因为所需的数值导数是相同的。 OCIS代码:280.1100、280.3640、280.1910。

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