首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Data Processing and Analysis Approach to Retrieve Carbon Dioxide Weighted-Column Mixing Ratio and 2- $mu$ m Reflectance With an Airborne Laser Absorption Spectrometer
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Data Processing and Analysis Approach to Retrieve Carbon Dioxide Weighted-Column Mixing Ratio and 2- $mu$ m Reflectance With an Airborne Laser Absorption Spectrometer

机译:检索二氧化碳加权塔混合比和2- $ mu $ m反射率

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摘要

We describe the data processing and analysis algorithms used for high-precision retrievals of CO2 weighted-column mixing ratio and 2-mu m surface reflectance from the Carbon Dioxide Laser Absorption Spectrometer (CO(2)LAS). The CO(2)LAS at the Jet Propulsion Laboratory, Pasadena, CA, USA, is one of the instruments designed to demonstrate capabilities needed for the NASA Active Sensing over Nights, Days, and Seasons mission concept. The integrated path differential absorption technique is used in CO2 retrieval. The along-track spatial resolution for the airborne measurements described here ranges from 10 m to 1 km. Our approach employs heterodyne detection of two laser signals reflected off earth's surface. Frequency domain processing enables return signal peak detection and high-fidelity power estimation. We compensate for range to ground variations using a digital elevation model and emphasize the importance of reflectance weighting in time averaging of the surface elevation. Quality control filters are applied, as well as a statistical methodology to filter laser speckle fluctuations. Reflectance is also retrieved on the scale of a few meters of ground track. Our data processing workflow and example retrievals are presented.
机译:我们描述了从二氧化碳激光吸收光谱仪(CO(2)LAS)高精度检索CO2加权柱混合比和2微米表面反射率的数据处理和分析算法。美国加利福尼亚州帕萨迪纳市喷气推进实验室的CO(2)LAS是一种旨在证明NASA在夜间,白天和四季任务概念上进行主动传感所需能力的仪器之一。集成路径差分吸收技术用于CO2检索。此处描述的机载测量沿轨道的空间分辨率范围为10 m至1 km。我们的方法采用外差法检测从地球表面反射的两个激光信号。频域处理可实现返回信号峰值检测和高保真功率估计。我们使用数字高程模型补偿距离变化对地面的变化,并强调反射加权在表面高程时间平均中的重要性。应用质量控制过滤器以及统计方法来过滤激光散斑波动。反射率也可以在几米的地面轨道上获取。介绍了我们的数据处理工作流程和示例检索。

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