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Reduction of skylight reflection effects in the above-water measurement of diffuse marine reflectance: comment

机译:减少海洋漫反射的水上测量中的天光反射效应:评论

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Use of a vertical polarizer has been suggested to reduce the effects of surface reflection in the above-water measurements of marine reflectance. We suggest using a similar technique for airborne or spaceborne sensors when atmospheric scattering adds its own polarization signature to the upwelling radiance. Our own theoretical sensitivity study supports the recommendation of Fougnie et al. [Appl. Opt. 38, 3844 (1999)] (40-50° vertical angle and azimuth angle near 135°, polarizer parallel to the viewing plane) for above-water measurements. However, the optimal viewing directions (and the optimal orientation of the polarizer) change with altitude above the sea surface, solar angle, and atmospheric vertical optical structure. A polarization efficiency function is introduced, which shows the maximal possible polarization discrimination of the background radiation for an arbitrary altitude above the sea surface, viewing direction, and solar angle. Our comment is meant to encourage broader application of airborne and spaceborne polarization sensors in remote sensing of water and sea surface properties.
机译:已经建议使用垂直偏振器来减少在海洋反射率的水上测量中表面反射的影响。当大气散射将其自身的极化特征添加到上升流辐射时,我们建议对机载或星载传感器使用类似的技术。我们自己的理论敏感性研究支持了Fougnie等人的建议。 [应用选择。 38,3844(1999)](垂直角度为40-50°,方位角接近135°,偏振器平行于观察平面)进行水上测量。但是,最佳观察方向(和偏振器的最佳方向)随海平面以上的高度,太阳角和大气垂直光学结构而变化。引入了极化效率函数,该函数显示了对于海平面以上,观察方向和太阳角的任意高度,背景辐射的最大可能极化判别。我们的评论旨在鼓励机载和星载极化传感器在水和海表特性的遥感中更广泛地应用。

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