首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >Sua pan surface bidirectional reflectance: a case study to evaluate the effect of atmospheric correction on the surface products of the multi-angle imaging SpectroRadiometer (MISR) during SAFARI 2000
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Sua pan surface bidirectional reflectance: a case study to evaluate the effect of atmospheric correction on the surface products of the multi-angle imaging SpectroRadiometer (MISR) during SAFARI 2000

机译:a锅表面双向反射率:一个案例研究,以评估SAFARI 2000期间大气校正对多角度成像光谱辐射仪(MISR)的表面产物的影响

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摘要

This paper presents a validation case study of Multi-angle Imaging SpectroRadiometer (MISR) surface products where its bidirectional reflectance (BRF) measurements during the Southern Africa Regional Science Initiative (SAFARI 2000) campaign are compared with those coincidently evaluated on the ground and from the air, using the Portable Apparatus for Rapid Acquisition of Bidirectional Observations of Land and Atmosphere (PARABOLA) and Cloud Absorption Radiometer observations, respectively. The presence of haze and smoke during the campaign provided a case study to evaluate the effect of atmospheric correction on MISR surface products. Two surface types were considered in the analyses: the bright desert-like surface of the Pan and the dark grassland that surrounds it. The results show that for the dark surface the BRF values retrieved from MISR are in good agreement, within 5%, with those obtained from field data. For the bright desert-like pan surface, better agreement, within /spl sim/10%, was found in all channels on the clear day but only in the forward scattering on the hazy day. A comparison of MISR aerosol retrievals to those obtained from three independent ground measurements suggests that, in the presence of a highly reflective surface, small uncertainties in the MISR aerosol retrievals become magnified at larger optical depths, causing errors in the surface BRF retrievals.
机译:本文介绍了一个多角度成像光谱辐射仪(MISR)表面产品的验证案例研究,该产品将其在南部非洲区域科学计划(SAFARI 2000)活动期间的双向反射率(BRF)测量值与在地面上以及从地面同时进行的评估相比较。空气,分别使用便携式仪器快速获取陆地和大气双向观测值(PARABOLA)和云吸收辐射计观测值。活动期间烟雾和烟雾的存在提供了一个案例研究,以评估大气校正对MISR表面产品的影响。分析中考虑了两种地表类型:潘的明亮沙漠状表面和包围它的深色草地。结果表明,对于深色表面,从MISR检索到的BRF值与从现场数据获得的BRF值在5%之内吻合良好。对于明亮的沙漠状锅表面,在晴天,在所有通道中都发现更好的一致性,在/ spl sim / 10%以内,但在朦胧的日子中才发现前向散射。将MISR气溶胶回收与从三个独立的地面测量获得的结果进行比较表明,在存在高反射率的表面的情况下,MISR气溶胶回收的较小不确定性会在较大的光学深度处被放大,从而导致表面BRF回收出现误差。

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