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Retrieval of CO from nadir remote-sensing measurements in the infrared by use of four different inversion algorithms

机译:通过使用四种不同的反演算法从红外的最低点遥感测量中检索CO

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摘要

Four inversion schemes based on various retrieval approaches (digital gas correlation, nonlinear least squares, global fit adjustment, and neural networks) developed to retrieve CO from nadir radiances measured by such downward-looking satelliteborne instruments as the Measurement of Pollution in the Troposphere (MOPITT), the Tropospheric Emission Spectrometer (TES), and the Infrared Atmospheric Sounding Interferometer (IASI) instruments were compared both for simulated cases and for atmospheric spectra recorded by the Interferometric Monitor for Greenhouse Gases (IMG). The sensitivity of the retrieved CO total column amount to properties that may affect the inversion accuracy (noise, ancillary temperature profile, and water-vapor content) was investigated. The CO column amounts for the simulated radiance spectra agreed within 4%, whereas larger discrepancies were obtained when atmospheric spectra recorded by the IMG instrument were analyzed. The assumed vertical temperature profile is shown to be a critical parameter for accurate CO retrieval. The instrument's line shape was also identified as a possible cause of disagreement among the results provided by the groups of scientists who are participating in this study.
机译:开发了基于各种检索方法(数字气体相关性,非线性最小二乘,整体拟合调整和神经网络)的四种反演方案,以从由对流层大气污染测量(MOPITT)等向下看的星载仪器测量的天底辐射中检索CO。 ),对流层发射光谱仪(TES)和红外大气探测干涉仪(IASI)仪器进行了比较,比较了模拟情况和温室气体干涉监测仪(IMG)记录的大气光谱。研究了检索到的CO总塔数对可能影响反演精度(噪音,辅助温度曲线和水蒸气含量)的属性的敏感性。模拟辐射光谱的CO柱数量在4%之内,而对IMG仪器记录的大气光谱进行分析时,差异更大。假定的垂直温度曲线显示为准确获取CO的关键参数。参与此项研究的一组科学家提供的结果也表明,仪器的线形可能是引起分歧的可能原因。

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