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Comparison between laboratory and airborne BRDF measurements for remote sensing

机译:实验室和机载BRDF遥感测量之间的比较

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Samples from soil and leaf litter were obtained at a site located in the savanna biome of South Africa (Skukuza; 25.0°S, 31.5°E) and their bidirectional reflectance distribution functions (BRDF) were measured using the out-of-plane scatterometer located in the National Aeronautics and Space Administration's (NASA's) Goddard Space Flight Center (GSFC) Diffuser Calibration Facility (DCaF). BRDF was measured using P and S incident polarized light over a range of incident and scatter angles. A monochromator-based broadband light source was used in the ultraviolet (uv) and visible (vis) spectral ranges. The diffuse scattered light was collected using an uv-enhanced silicon photodiode detector with output fed to a computer-controlled lock-in amplifier. Typical measurement uncertainties of the reported laboratory BRDF measurements are found to be less than 1% (k=1). These laboratory results were compared with airborne measurements of BRDF from NASA's Cloud Absorption Radiometer (CAR) instrument over the same general site where the samples were obtained. This study presents preliminary results of the comparison between these laboratory and airborne BRDF measurements and identifies areas for future laboratory and airborne BRDF measurements. This paper presents initial results in a study to try to understand BRDF measurements from laboratory, airborne, and satellite measurements in an attempt to improve the consistency of remote sensing models.
机译:在南非萨凡纳生物群落(Skukuza; 25.0°S,31.5°E)的一个地点获得了土壤和落叶的样品,并使用位于其外部的平面散射仪测量了其双向反射率分布函数(BRDF)。在美国国家航空航天局(NASA)的戈达德太空飞行中心(GSFC)扩散器校准设施(DCaF)中。使用P和S入射偏振光在一定范围的入射角和散射角上测量BRDF。在紫外(uv)和可见(vis)光谱范围内使用基于单色仪的宽带光源。使用紫外线增强型硅光电二极管检测器收集散射的散射光,并将输出馈送到计算机控制的锁定放大器。已发现报告的实验室BRDF测量的典型测量不确定度小于1%(k = 1)。将这些实验室结果与从美国国家航空航天局(NASA)的云吸收辐射计(CAR)仪器在获得样品的同一地点进行的BRDF的空中测量结果进行了比较。这项研究提供了这些实验室和机载BRDF测量结果之间比较的初步结果,并确定了未来实验室和机载BRDF测量结果的领域。本文提供了一项初步研究结果,旨在了解实验室,机载和卫星测量的BRDF测量结果,以期改善遥感模型的一致性。

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