Comparison of 20 million airborne lidar optical profiles to anything else

Brian M. Concannon, Aaron G. Meldrum, D. Illig, Benjamin M. Decker, Aaron D. Pyrah, Anton Vasilyev
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Abstract

During a twelve day field test west of the continental shelf off the coast of Washington state, we conducted multiple environmental data collection flights in a 150 km by 150 km area. We operated a scanning lidar system optimized for ocean profiling collecting near surface atmospheric return signal, surface reflections and optical profiles to several optical depths. The along and across track spatial resolution was approximately 10 meters and the vertical resolution was approximately 0.1 meters. We also deployed ten single use temperature profiling buoys during the test. We will present comparisons of the spatial-temporal lidar data to the buoy data and other public source data, such as satellite derived k-diffuse and Argo float data. It is our expectation that the lidar data will reveal complex and changing vertical optical structures on sub-kilometer horizontal scales that are not adequately captured by other ocean sensing techniques.
将 2000 万个机载激光雷达光学剖面图与其他任何东西进行比较
在华盛顿州海岸大陆架以西进行的为期 12 天的实地测试中,我们在 150 千米乘 150 千米的区域内进行了多次环境数据收集飞行。我们运行了一个扫描激光雷达系统,该系统针对海洋剖面测量进行了优化,可收集近表面大气回波信号、表面反射信号和多个光学深度的光学剖面。沿轨道和跨轨道的空间分辨率约为 10 米,垂直分辨率约为 0.1 米。测试期间,我们还部署了 10 个一次性使用的温度剖面浮标。我们将把激光雷达的时空数据与浮标数据及其他公共来源数据(如卫星推导的 k-diffuse 和 Argo 浮标数据)进行比较。我们期望激光雷达数据能够揭示其他海洋传感技术无法充分捕捉的亚千米水平尺度上复杂多变的垂直光学结构。
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