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Sensitivity analysis of a new SWIR-channel measuring tropospheric CH4 and CO from space

机译:一种新的抢修对流层CH4和空间CO的敏感性分析

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In preparation for future atmospheric space missions a consortium of Dutch organizations is performing design studies on a nadir viewing grating-based imaging spectrometer using OMI and SCIAMACHY heritage. The spectrometer measures selected species (O_3, NO_2, HCHO, H_2O, SO_2, aerosols (optical depth, type and absorption index), CO and CH4) with sensitivity down to the Earth's surface, thus addressing science issues on air quality and climate. It includes 3 UV-VIS channels continuously covering the 270-490 nm range, a NIR-channel covering the 710-775 nm range, and a SWIR-channel covering the 2305-2385 nm range. This instrument concept is, named TROPOMI, part of the TRAQ-mission proposal to ESA in response to the Call for Earth Explorer Ideas 2005, and, named TROPI, part of the CAMEO-proposal prepared for the US NRC decadal study-call on Earth science and applications from space. The SWIR-channel is optional in the TROPOMI/TRAQ instrument and included as baseline in the TROPI/CAMEO instrument. This paper focuses on derivation of the instrument requirements of the SWIR-channel by presenting the results of retrieval studies. Synthetic detector spectra are generated by the combination of a forward model and an instrument simulator that includes the properties of state-of-the-art detector technology. The synthetic spectra are input to the CO and CH4 IMLM retrieval algorithm originally developed for SCIAMACHY. The required accuracy of the Level-2 SWIR data products defines the main instrument parameters like spectral resolution and sampling, telescope aperture, detector temperature, and optical bench temperature. The impact of selected calibration and retrieval errors on the Level-2 products has been characterized. The current status of the SWIR-channel optical design with its demanding requirements on ground-pixel size, spectral resolution, and signal-to-noise ratio will be presented.
机译:在准备未来的大气空间任务时,荷兰组织的财团正在使用OMI和款群遗产来对Nadir观察光栅的成像光谱仪进行设计研究。光谱仪测量所选物种(O_3,NO_2,HCHO,H_2O,SO_2,气溶胶(光学深度,型和吸收指数),CO和CH4),敏感性下降到地球表面,从而解决了空气质量和气候的科学问题。它包括连续覆盖270-490nm范围的3个UV-VIS通道,覆盖710-775nm范围的NIR通道,以及覆盖2305-2385nm范围的猛禽通道。这个乐器概念是罗马米,部分Trop-Mission关于ESA的一部分,以回应地球探险家2005年的呼吁,并命名为Tropi,其中包括在地球上为美国NRC Decadal学习呼叫准备的集手建议从太空的科学和应用。 Swir-ander是Tropomi / Traq仪器中的可选,并作为Tropi / Caveo仪器中的基线。本文通过呈现检索研究结果来介绍苏尔频道的仪器要求的推导。合成检测器光谱由前向模型和仪器模拟器的组合产生,包括最先进的探测器技术的性质。合成光谱是最初为Sciamachy开发的CO和CH4 IMLM检索算法。等级-2 SWIR数据产品的所需精度定义了频谱分辨率和采样,望远镜光圈,检测器温度和光学台温等主仪器参数。已经表征了所选校准和检索误差对2级产品的影响。将呈现SWIR通道光学设计的当前状态,并提出了对地面像素尺寸,光谱分辨率和信噪比的要求。

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