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On-orbit Radiometric Stability Assessment of MODIS Thermal Emissive Bands with Lunar Observation

机译:利用月球观测估算MODIS热发射带的在轨辐射稳定性

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The MODIS thermal emissive bands (TEB) are radiometrically calibrated on-orbit on a scan-by-scan basis, with reference to an aboard blackbody operated at 290 K for Terra MODIS and at 285 K for Aqua MODIS. The quality of the calibration can be evaluated with independent thermal sources at other temperatures. As a spectrally, spatially and radiometrically stable source, the Moon has become more important to the on-orbit calibration of space-borne spectral sensors that have regular lunar observation capability. MODIS is scheduled to observe the Moon on a nearly monthly basis at approximately the same lunar phase angle through its space view port. In this paper, the long-term stability of MODIS TEB radiometric calibration is assessed through the multi-year trends of the brightness temperatures (BT) of the lunar surface retrieved from the scheduled lunar observation. The highest lunar surface temperature is approximately 390 K, higher than the saturation temperatures of most TEB. For the non-saturated bands, the trending is based on the BT of the hottest area of the Moon. For the partially saturated bands, the trending is based on the BT difference of the unsaturated matching pixels between the band and a non-saturated reference band, given the fact that all MODIS bands are spatially registered. Overall, the trends have been stable throughout MODIS lifetime. The results also prove that the Moon can be used as a source to monitor the stability of the thermal bands.
机译:MODIS热发射带(TEB)是以逐扫描方式在轨道上进行辐射校准的,参考的是在Terra上以290 K运行的黑体,在Aqua上以285 K运行的水上黑体。可以在其他温度下使用独立的热源评估校准的质量。作为光谱,空间和辐射稳定的源,月球对于具有常规月球观测能力的星载光谱传感器的在轨校准变得越来越重要。 MODIS计划通过其太空观察口以几乎相同的月相角近月一次地观测月球。在本文中,通过从计划的月球观测中获得的月球表面亮度温度(BT)的多年趋势,评估了MODIS TEB辐射定标的长期稳定性。最高的月球表面温度约为390 K,高于大多数TEB的饱和温度。对于非饱和波段,趋势基于月球最热区域的BT。对于部分饱和的频段,考虑到所有MODIS频段均已在空间上对齐,因此趋势基于该频段与非饱和参考频段之间的不饱和匹配像素的BT差。总体而言,趋势在整个MODIS生命周期中一直稳定。结果还证明,月球可用作监测热带稳定性的来源。

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