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Effect of Solar-Cloud-Satellite Geometry on Land Surface Shortwave Radiation Derived from Remotely Sensed Data

机译:太阳云卫星几何形状对遥感数据产生的地表短波辐射的影响

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Clouds and their associated shadows are major obstacles to most land surface remote sensing applications. Meanwhile, solar-cloud-satellite geometry (SCSG) makes the effect of clouds and shadows on derived land surface biophysical parameters more complicated. However, in most existing studies, the SCSG effect has been frequently neglected although it is pointed out by many works that SCSG effect is a noticeable problem, especially in the field of land surface radiation budget. Taking shortwave downward radiation (SWDR) as a testing variable, this study quantified the SCSG effect on the derived SWDR, and proposed an operational scheme to correct the big effect. The results demonstrate that the proposed correcting scheme is very effective and works very well. It is revealed that a significant under- or overestimation is detected in retrieved SWDR if the SCSG effect is ignored. Typically, the induced error in SWDR can reach up to 80%. The scheme and findings of this study are expected to be inspirational for the land surface remote sensing community, wherein solar-cloud-satellite geometry is an unavoidable issue.
机译:云及其相关的阴影是大多数陆地表面遥感应用的主要障碍。同时,太阳云卫星几何(SCSG)使云和阴影对导出的陆地表面生物物理参数的影响更加复杂。但是,在许多现有研究中,尽管许多工作都指出,SCSG效应是一个值得注意的问题,特别是在地表辐射预算领域,但SCSG效应却经常被忽略。本研究以短波下行辐射(SWDR)为测试变量,量化了SCSG对导出的SWDR的影响,并提出了一种校正大影响的操作方案。结果表明,所提出的校正方案非常有效并且效果很好。结果表明,如果忽略了SCSG效应,则会在检索到的SWDR中检测到明显的低估或高估。通常,SWDR中的诱发误差可以达到80%。这项研究的计划和发现有望为陆面遥感界带来鼓舞,因为太阳-云-卫星几何是不可避免的问题。

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