Liu Bing-Yi, Esselborn Michael, Wirth Martin, Fix Andreas, Bi De-Cang, Ehret Gerhard
Key Laboratory of Ocean Remote Sensing, Ministry of Education of China, Ocean University of China, 5 Yushan Road, Qingdao 266003, China.
Appl Opt. 2009 Sep 20;48(27):5143-54. doi: 10.1364/AO.48.005143.
The influence of molecular scattering models on aerosol optical properties measured by high spectral resolution lidar (HSRL) is experimentally investigated and theoretically evaluated. The measurements analyzed in this study were made during three field campaigns by the German Aerospace Center airborne HSRL. The influence of the respective theoretical model on spaceborne HSRL retrievals is also estimated. Generally, the influence on aerosol extinction coefficient can be neglected for both airborne and spaceborne HSRLs. However, the influence on aerosol backscatter coefficient depends on aerosol concentration and is larger than 3% (6%) at ground level for airborne (spaceborne) HSRLs, which is considerable for the spaceborne HSRL, especially when the aerosol concentration is low. A comparison of the HSRL measurements and coordinated ground-based sunphotometer measurements shows that the influence of the model is observable and comparable to the measurement error of the lidar system.
通过实验研究和理论评估了分子散射模型对高光谱分辨率激光雷达(HSRL)测量的气溶胶光学特性的影响。本研究分析的测量数据是德国航空航天中心机载HSRL在三次野外测量活动期间获取的。还估算了各自理论模型对星载HSRL反演结果的影响。一般来说,对于机载和星载HSRL,对气溶胶消光系数的影响均可忽略不计。然而,对气溶胶后向散射系数的影响取决于气溶胶浓度,对于机载(星载)HSRL,在地面水平时大于3%(6%),这对星载HSRL来说相当可观,尤其是在气溶胶浓度较低时。HSRL测量结果与同步地面太阳光度计测量结果的比较表明,模型的影响是可观测的,并且与激光雷达系统的测量误差相当。