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Estimation of uncertainties in the Spectral Response Function of the water vapor channel of a meteorological imager

机译:气象成像仪水蒸气通道谱响应函数的不确定性估计

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The five channel meteorological imager (MI) on-board the geostationary Communication, Ocean, and Meteorological Satellite (COMS) of Korea has been operationally used since April 2011. For a better utilization of the MI data, a rigorous characterization of the four infrared channel data has been conducted using the GSICS (Global Space-based Inter-Calibration System) approach with the IASI (Infrared Atmospheric Sounding Interferometer) on-board the European Metop satellite as the reference instrument. Although all four channels show the uncertainty characteristics that are in line with the results from both the ground tests and the in-orbit-test, there shows an unexpected systematic bias in the water vapor channel of MI, showing a cold bias at the warm target temperature and a warm bias with the cold target temperature. It has been shown that this kind of systematic bias could be introduced by the uncertainties in the spectral response function (SRF) of the specific channel which is similar to the heritage instruments on-board GOES series satellite. An extensive radiative transfer simulation using a radiative transfer model has confirmed that the SRF uncertainty could indeed introduce such a systematic bias. By using the collocated data set consisting of the MI data and the hyperspectral IASI data, the first order correction value for the SRF uncertainty is estimated to be about 2.79 cm~(-1) shift of the central position of the current SRF.
机译:五道气象成像仪(MI)机载对地静止通信,海洋和气象卫星韩国(COMS)自2011年4月投入运行对于更好地利用MI数据,四个红外通道的严格鉴定数据已被使用与所述IASI(红外大气探测干涉)的GSICS(全球空基间标定系统)方法,车载欧洲METOP卫星作为基准仪器进行。虽然所有四个信道表明,在与从地面试验和在轨测试两者的结果线的不确定性特性,但是示出了在MI的水蒸汽通道意外的系统性偏差,示出了在暖目标冷偏压温度和与冷目标温度温暖的偏见。已经表明,这种系统偏差可以通过在特定的信道的光谱响应函数(SRF),这是类似于车载遗产仪器的不确定性被引入GOES系列卫星。利用辐射传输模式的广泛辐射传输模拟证实,SRF不确定性确实可以推出这样的系统性偏差。通过使用由该MI数据和高光谱IASI数据的并置数据集,对于SRF不确定性的第一阶修正值被估计为大约2.79厘米当前SRF的中心位置的〜(-1)偏移。

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