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Validation of AVHRR- and MODIS-derived albedos of snow and ice surfaces by means of helicopter measurements

机译:通过直升机测量验证AVHRR和MODIS得出的冰雪表面反射率

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We describe the validation of surface albedos of snow and glacier ice as derived from Advanced Very High Resolution Radiometer (AVHRR) and MOderate Resolution Imaging Spectrometer (MODIS) satellite data. For this purpose we measured surface albedos from a helicopter over Vatnajokull, Iceland, and the Kangerlussuaq transect (western part of the Greenland ice sheet) in Thematic Mapper (TM) bands 2 and 4 and AVHRR bands 1 and 2, and converted these values to 'measured albedos' in three MODIS bands. Relative to other validation methods, our helicopter measurements have the advantages of larger spatial coverage and of (almost) direct measurements in satellite-sensor spectral bands. We found the smallest differences between the satellite-derived and helicopter albedos for the Kangerlussuaq transect: for AVHRR data a mean difference of 0.01 in both bands (with the satellite in near-nadir position) and for two MODIS images a mean difference of 0.00-0.02 for bands 2 and 4, and 0.03 for band 1. For two AVHRR images of Vatnajokull, we found mean differences of up to 0.06. Differences are primarily due to errors in the satellite-derived albedos, which, in turn, are mainly caused by errors in the calibration coefficients of the satellite sensors and insufficient knowledge of the angular distribution of the radiation reflected by snow and ice. Satellite data obtained from view zenith angles larger than similar to 50-55 degrees appeared to be unsuitable.
机译:我们描述了根据超高分辨率高分辨率辐射计(AVHRR)和分辨率分辨率成像光谱仪(MODIS)卫星数据得出的雪和冰川冰的表面反照率的验证。为了这个目的,我们测量了主题映射器(TM)波段2和4以及AVHRR波段1和2在冰岛Vatnajokull和Kangerlussuaq断面(格陵兰冰盖的西部)上空直升机的反照率,并将其转换为在三个MODIS波段中的“测得的反照率”。相对于其他验证方法,我们的直升机测量具有较大的空间覆盖范围和(几乎)直接在卫星传感器光谱带中进行测量的优势。我们发现了Kangerlussuaq断面的卫星反照率和直升机反照率之间的最小差异:对于AVHRR数据,两个波段的平均差异为0.01(卫星处于近天底位置),而对于两个MODIS图像,平均差异为0.00-频段2和4的值为0.02,频段1的为0.03。对于两幅Vatnajokull的AVHRR图像,我们发现平均差异最大为0.06。差异主要是由于源自卫星的反照率的误差,而误差又主要是由于卫星传感器的校准系数的误差以及对冰雪反射的辐射角分布的了解不足而造成的。从大于约50-55度的天顶角获得的卫星数据似乎不合适。

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