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Opportunistic Constant Target Matching—A New Method for Satellite Intercalibration

机译:机会恒定目标匹配 - 一种新方法卫星界面

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Opportunistic constant target matching is a new method for satellite intercalibration. It solves a long‐standing issue with the traditional simultaneous nadir overpass (SNO) method, namely, that it typically provides only data points with cold brightness temperatures for humidity sounding instruments on sun‐synchronous satellites. In the new method, a geostationary infrared sensor (SEVIRI) is used to select constant target matches for two different microwave sensors (MHS on NOAA 18 and Metop A). We discuss the main assumptions and limitations of the method and explore its statistical properties with a simple Monte Carlo simulation. The method was tested in a simple case study with real observations for this combination of satellites for MHS Channel 3 at 183?±?1?GHz, the upper tropospheric humidity channel. For the studied 3‐month test period, real observations are found to behave consistently with the simulations, increasing our confidence that the method can be a valuable tool for intercalibration efforts. For the selected case study, the new method confirms that the bias between NOAA 18 and Metop A MHS Channel 3 is very small, with absolute value below 0.05?K.
机译:机会主义的恒定目标匹配是卫星界面的新方法。它解决了传统的同时Nadir天桥(SNO)方法的长期问题,即它通常仅提供具有冷亮度温度的数据点,用于太阳同步卫星上的湿度探测仪器。在新方法中,用于选择两个不同微波传感器的恒定目标匹配(NOAA 18和METOP A)的恒定目标匹配。我们讨论了该方法的主要假设和局限性,并探讨了简单的蒙特卡罗模拟的统计特性。该方法在一个简单的案例研究中测试,具有用于这种卫星的真实观察MHS通道3的真实观察,在183Ω·α1≤hob,上部对流层湿度通道。对于研究的3个月测试期,发现实际观察结果始终如一的模拟,增加了我们的信心,即该方法可以是用于跨跨度工作的有价值的工具。对于所选案例研究,新方法确认NOAA 18和MHS通道3之间的偏压非常小,绝对值低于0.05?K。

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