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Improving the Accuracy of Aerosol Extinction Coefficient Inversion

机译:提高气溶胶消光系数反演的精度

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This paper considers the relationship between the accuracy of aerosol extinction inversion and the boundary value, and derives a theoretical high-accuracy aerosol extinction coefficient inversion. Aerosol extinction coefficient profiles depend on the boundary value. The relationship function of the differential extinction coefficient and differential boundary value is expressed by a maximum value. The smaller the differential boundary value, the smaller the differential extinction coefficient. The clean atmosphere layer is easily found from the lidar range-corrected signal, and the extinction coefficient of the clean atmosphere layer can be obtained using the slope method. By relating the extinction coefficient of the clean atmosphere layer to the extinction coefficient profiles at different boundary values, an accurate aerosol extinction coefficient profile can be obtained.
机译:本文考虑了气溶胶消光反演精度与边界值之间的关系,并推导了理论上的高精度气溶胶消光系数反演。气溶胶的消光系数曲线取决于边界值。微分消光系数与微分边界值的关系函数由最大值表示。微分边界值越小,微分消光系数越小。从激光雷达范围校正信号中可以容易地找到干净的大气层,并且可以使用斜率方法获得干净的大气层的消光系数。通过将清洁大气层的消光系数与不同边界值处的消光系数曲线相关联,可以获得精确的气溶胶消光系数曲线。

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