Ismail S, Browell E V
Appl Opt. 1989 Sep 1;28(17):3603-15. doi: 10.1364/AO.28.003603.
This paper presents an evaluation of the random and systematic error sources associated with differential absorption lidar (DIAL) measurements of tropospheric water vapor (H(2)O) profiles from airborne and spaceborne platforms. The results of this analysis are used in the development and performance evaluation of the Lidar Atmospheric Sensing Experiment (LASE) H(2)O DIAL system presently under development at the NASA Langley Research Center for operation on a high altitude ER-2 (advanced U-2) aircraft. The analysis shows that a <10% H(2)O profile measurement accuracy is possible for the LASE system with a vertical and horizontal resolution of 200 m and 10 km, respectively, at night and 300 m and 20 km during the day. Global measurements of H(2)O profiles from spaceborne DIAL systems can be made to a similar accuracy with a vertical resolution of 500 m and a horizontal resolution of 100 km.
本文对与从机载和星载平台进行对流层水汽(H₂O)廓线的差分吸收激光雷达(DIAL)测量相关的随机误差源和系统误差源进行了评估。该分析结果用于美国国家航空航天局兰利研究中心目前正在研制的激光雷达大气传感实验(LASE)H₂O DIAL系统的开发和性能评估,该系统将在高空ER - 2(先进U - 2)飞机上运行。分析表明,对于LASE系统,夜间垂直分辨率为200米、水平分辨率为10千米,白天垂直分辨率为300米、水平分辨率为20千米时,有可能实现<10%的H₂O廓线测量精度。星载DIAL系统对H₂O廓线进行全球测量时,垂直分辨率为500米、水平分辨率为100千米时,也可达到类似的精度。