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Improvements of the aerosol algorithm in ozone lidar data processing by use of evolutionary strategies

机译:进化策略对臭氧激光雷达数据处理中气溶胶算法的改进

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摘要

The differential absorption lidar (DIAL) at the Institut fur Meteorologie und Klimaforschung has been upgraded for precise ozone and aerosol studies in the entire troposphere and the lower stratosphere. Its excellent technical performance offers the opportunity to apply improved data processing. The existing inversion algorithm is extended to derive the optical coefficients from the backscatter profiles for three wavelengths. Correlating the correction terms of the DIAL equation and the ozone concentration yields the wavelength dependence of the backscatter and extinction coefficients of the aerosol. Under some conditions, in particular if homogeneous layers are present, the backscatter-to-extinction ratio and the reference value can also be retrieved. We find the solutions by applying evolutionary strategies. From the optical coefficients obtained in this way the ozone concentration can be calculated with substantially reduced error.
机译:气象研究所和Klimaforschung研究所的差分吸收激光雷达(DIAL)已升级,可对整个对流层和低平流层进行精确的臭氧和气溶胶研究。其出色的技术性能为应用改进的数据处理提供了机会。扩展了现有的反演算法,以从三个波长的反向散射轮廓中得出光学系数。将DIAL方程的校正项与臭氧浓度进行关联,可以得出反向散射的波长依赖性以及气溶胶的消光系数。在某些情况下,特别是如果存在均质层,则还可以获取反向散射消光比和参考值。我们通过应用进化策略找到解决方案。根据以这种方式获得的光学系数,可以显着减小误差地计算臭氧浓度。

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