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Bichromatic method for identification of clear-sky scenarios over ground pixel viewed from space

机译:从空间看地面物体上晴空场景的双色识别方法

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摘要

We propose a method for identifying clear-sky scenarios from a measurement time series over satellite-observed ground pixels of unknown surface albedo and aerosol type. The lack of a general monotonic relationship between aerosol loading and observed reflectance encumbers the ordering of the observation time series according to aerosol loading. This problem is ameliorated by using two wavelengths at which the surface albedos are known to differ. Treating an observation as being cloud/aerosol free allows for the determination of the corresponding Lambertian equivalent albedo, the relative contrast of which at the two wavelengths varies monotonically with respect to aerosol-loading, clear-sky and completely clouded scenarios representing the extreme cases. Applying this method to the Scanning Imaging Absorption Spectrometer for Atmospheric Chartography measurements over a nondark surface, we validate it by comparing measured against modeled O_(2) A- and B-band absorption at the retrieved albedo in an aerosol-free atmosphere.
机译:我们提出了一种方法,该方法用于根据未知地面反照率和气溶胶类型的卫星观测地面像素上的测量时间序列来识别晴空场景。气溶胶负载量与观测反射率之间缺乏一般的单调关系,这阻碍了根据气溶胶负载量对观测时间序列的排序。通过使用已知的表面反射率不同的两个波长,可以改善此问题。将观测值视为无云/无气雾的观测可以确定相应的朗伯等效反照率,在代表极端情况的气溶胶负载,晴空和完全浑浊的情况下,两个波长的相对对比度单调变化。将这种方法应用于扫描成像吸收光谱仪在非深色表面上进行大气海图测量,我们通过在无气溶胶的大气环境下,将所获取的反照率与模拟的O_(2)A和B波段吸收率进行了比较,从而对其进行了验证。

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