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Monochromatic measurements of the JPSS-1 VIIRS polarization sensitivity

机译:JPSS-1 VIIRS偏振灵敏度的单色测量

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摘要

Polarization sensitivity is a critical property that must be characterized for spaceborne remote sensing instruments designed to measure reflected solar radiation. Broadband testing of the first Joint Polar-orbiting Satellite System (JPSS-1) Visible Infrared Imaging Radiometer Suite (VIIRS) showed unexpectedly large polarization sensitivities for the bluest bands on VIIRS (centered between 400 and 600 nm). Subsequent ray trace modeling indicated that large diattenuation on the edges of the bandpass for these spectral bands was the driver behind these large sensitivities. Additional testing using the National Institute of Standards and Technology's Traveling Spectral Irradiance and Radiance Responsivity Calibrations Using Uniform Sources was added to the test program to verify and enhance the model. The testing was limited in scope to two spectral bands at two scan angles; nonetheless, this additional testing provided valuable insight into the polarization sensitivity. Analysis has shown that the derived diattenuation agreed with the broadband measurements to within an absolute difference of about 0.4% and that the ray trace model reproduced the general features of the measured data. Additionally, by deriving the spectral responsivity, the linear diattenuation is shown to be explicitly dependent on the changes in bandwidth with polarization state. (C) 2016 Optical Society of America
机译:极化灵敏度是设计用于测量反射太阳辐射的星载遥感仪器必须表征的一项关键属性。第一个联合极轨卫星系统(JPSS-1)可见光红外成像辐射计套件(VIIRS)的宽带测试显示,对于VIIRS上最蓝的波段(中心在400至600 nm之间),偏振灵敏度异常高。随后的射线迹线建模表明,对于这些光谱带,带通边缘上的大衰减是造成这些大灵敏度的驱动力。在测试程序中添加了使用美国国家标准技术研究院的行进光谱​​辐照度和使用统一光源的辐射响应度校准的附加测试,以验证和增强模型。该测试的范围仅限于两个扫描角度的两个光谱带。尽管如此,这项额外的测试还是提供了有关极化灵敏度的宝贵见解。分析表明,导出的衰减量与宽带测量值相吻合,绝对差约为0.4%,并且射线轨迹模型重现了测量数据的一般特征。另外,通过推导光谱响应度,线性衰减被显示为显着依赖于偏振态带宽的变化。 (C)2016美国眼镜学会

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