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PROGRESS IN BRDF CALIBRATION MEASUREMENTS IN THE SWIR

机译:SWIR中BRDF校准测量的进展

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Satellite instruments operating in the reflective solar wavelength region often require accurate and precise determination of the Bidirectional Reflectance Distribution Function (BRDF). Laboratory-based diffusers are used in their pre-flight calibrations and at ground-based support of on-orbit remote sensing instruments. The Diffuser Calibration Lab at NASA's Goddard Space Flight Center is a secondary diffuser calibration standard after NIST for over two decades, providing numerous NASA projects with BRDF data in the UV, Visible and the NIR spectral regions. The Diffuser Calibration Lab works on extending the covered spectral range from 900 nm up to 1.7 microns. The measurements are made using the existing scatterometer by replacing the Si photodiode based receiver with an InGaAsbased one. The BRDF data was recorded at normal incidence and scatter zenith angles from 10 to 60 deg. Tunable coherent light source was used at this setup. Monochromator based broadband light source application is also under development. The results are discussed and compared to empirically generated BRDF data from simple model based on 6 deg directional/hemispherical measurements and experimental data in the 900 – 1100 nm spectral range.
机译:在反射太阳波长区域工作的卫星仪器通常需要准确且精确地确定双向反射分布功能(BRDF)。基于实验室的漫射器用于其前飞行前校准以及在轨道遥感仪器的地面支持下。 NASA的戈达德航天飞行中心的扩散器校准实验室是NIST后二十多年后的二级扩散器校准标准,提供了紫外线,可见和NIR光谱区域的BRDF数据的众多NASA项目。扩散器校准实验室适用于延伸覆盖的光谱范围,从900nm高达1.7微米。通过用InGaAsbased替换基于Si光电二极管的接收器,使用现有散射计进行测量。 BRDF数据被记录在正常的入射下,并散射天顶角度,从10到60°。此设置使用可调谐相干光源。基于单色仪的宽带光源应用也在开发中。讨论结果,并根据基于6°定向/半球测量和900-1100nm光谱范围内的实验数据与简单模型的经验生成的BRDF数据进行比较。

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