Effect of the Instrument Slit Function on Upwelling Radiance from a Wavelength Dependent Surface Reflectance

R. Jagpal, R. Siddiqui, S. Abrarov, B. Quine
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引用次数: 1

Abstract

The Radiance Enhancement (RE) method was introduced for ef-ficient detection of clouds from the space. Recently, we have also re-ported that due to high reflectance of combustion-originated smokes, this approach can also be generalized for detection of the forest fires by retrieving and analyzing datasets collected from a space orbiting micro-spectrometer operating in the near infrared spectral range. In our previous publication, we have performed a comparison of observed and synthetic radiance spectra by developing a method for computation of surface reflectance consisting of different canopies by weighted sum based on their areal coverage. However, this approach should be justified by a method based on corresponding proportions of the upwelling radiance. The results of computations we performed in this study reveal a good match between areal coverage of canopies and the corresponding proportions of the upwelling radiance due to effect of the instrument slit function.
仪器狭缝函数对波长相关表面反射率上涌辐射的影响
为了从空间有效地探测云层,提出了辐射增强(RE)方法。最近,我们还报道了由于燃烧烟雾的高反射率,该方法也可以推广到通过检索和分析近红外光谱范围内空间轨道微型光谱仪收集的数据集来检测森林火灾。在我们之前的出版物中,我们通过开发一种基于面积覆盖的加权和计算由不同冠层组成的表面反射率的方法,对观测和合成的辐射光谱进行了比较。然而,这种方法应该通过一种基于上涌辐射的相应比例的方法来证明。本研究的计算结果表明,由于仪器狭缝函数的影响,冠层的面积覆盖与上升流辐射的相应比例之间具有良好的匹配关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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