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Multispectral information from TANSO-FTS instrument – Part 1: Application to greenhouse gases (CO2 and CH4) in clear sky conditions

机译:来自Tanso-FTS仪器的多光谱信息 - 第1部分:在清澈的天空条件下适用于温室气体(CO2和CH4)

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The Greenhouse gases Observing SATellite (GOSAT) mission, and in particular the Thermal And Near infrared Sensor for carbon Observations–Fourier Transform Spectrometer (TANSO-FTS) instrument, has the advantage of being able to measure simultaneously the same field of view in different spectral ranges with a high spectral resolution. These features allow studying the benefits of using multispectral measurements to improve the CO2 and CH4 retrievals. In order to quantify the impact of the spectral synergy on the retrieval accuracy, we performed an information content (IC) analysis from simulated spectra corresponding to the three infrared bands of TANSO-FTS. The advantages and limitations of using thermal and shortwave infrared simultaneously are discussed according to surface type and state vector composition. The IC is then used to determine the most informative spectral channels for the simultaneous retrieval of CO2 and CH4. The results show that a channel selection spanning the three infrared bands can improve the computation time and retrieval accuracy. Therefore, a selection of less than 700 channels from the thermal infrared (TIR) and shortwave infrared (SWIR) bands allows retrieving CO2 and CH4 simultaneously with a similar accuracy to using all channels together to retrieve each gas separately.
机译:观察卫星(GOSAT)任务的温室气体,特别是用于碳观察 - 傅里叶变换光谱仪(奇核FTS)仪器的热和近红外传感器,具有能够在不同光谱中同时测量同一视野的优点范围高光谱分辨率。这些特征允许研究使用多光谱测量来改善CO2和CH4检索的好处。为了量化光谱协同措施对检索精度的影响,我们从对应于Tanso-FT的三个红外条带的模拟光谱进行了信息内容(IC)分析。根据表面类型和状态矢量组合物讨论了同时使用热和短波红外线的优点和限制。然后用于确定用于同时检索CO2和CH4的最具信息丰富的光谱通道。结果表明,跨越三个红外频带的频道选择可以提高计算时间和检索精度。因此,来自热红外(TIR)和短波红外(SWIR)频带的选择小于700个通道允许以类似的精度同时检索CO2和CH4,以将所有通道一起使用,以便分别地检索每个气体。

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