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Analysis of Range Measurements From a Pulsed Airborne $ hbox{CO}_{2}$ Integrated Path Differential Absorption Lidar

机译:脉冲机载脉冲的距离测量分析 $ hbox {CO} _ {2} $ 积分路径差分吸收激光雷达

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Determining the $hbox{CO}_{2}$ column abundance from an integrated path differential absorption (IPDA) lidar requires accurate knowledge of the range to the scattering surface, i.e., the column height. We have adapted and tested a ranging algorithm for the airborne IPDA $hbox{CO}_{2}$ lidar designed at the NASA Goddard Space Flight Center, and have evaluated its accuracy and precision. We applied a quasi-maximum-likelihood method, using cross correlation, to estimate the range from the lidar's 1-$muhbox{s}$ -wide echo pulses. The objective was to show that the use of these temporally long laser pulses allows the determination of the optical path length with required precision. We analyzed airborne measurements made in August 2009 over the Chesapeake Bay near the Eastern Shore of Virginia. The results indicate a ranging precision of better than 3 m, which is sufficient for airborne and space-based retrievals of $ hbox{CO}_{2}$ column concentration.
机译:从积分路径差分吸收(IPDA)激光雷达确定 $ hbox {CO} _ {2} $ 列丰度需要准确了解散射表面的范围,即柱高。我们已经为机载IPDA设计的机载IPDA $ hbox {CO} _ {2} $ 激光雷达改编并测试了测距算法美国宇航局戈达德太空飞行中心,并对其准确性和精确度进行了评估。我们使用了互相关的准最大似然方法来估计激光雷达的1- <公式Formulatype =“ inline”> $ muhbox {s} $ < / formula>宽的回波脉冲。目的是表明使用这些时间较长的激光脉冲可以以所需的精度确定光程长度。我们分析了2009年8月在弗吉尼亚东海岸附近的切塞皮克湾进行的空中测量。结果表明,测距精度优于3 m,足以用于机载和基于空间的 $ hbox {CO} _ {2} $ < / tex> 列浓度。

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