首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Aperture size effects on backscatter intensity measurements in Earth and space remote sensing
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Aperture size effects on backscatter intensity measurements in Earth and space remote sensing

机译:孔径大小对地球和太空遥感中反向散射强度测量的影响

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摘要

Most materials show a peaked intensity versus phase (light-source-target-detector angle) curve. For nonnegligible angular apertures of the source and/or the detector, the measured intensity at and near zero phase (backscatter) is lower than the real one. We derive an averaging aperture integral that represents this effect, and with it we invert measured intensity values to obtain the actual intensity curve. We also give a practical formula for estimating the magnitude of the aperture effect in zero-phase intensity measurements and show that only two such measurements made at different apertures are sufficient for deriving the real intensity. These corrections are needed in the comparison of measured reflectances in an increasing number of validation efforts for remote sensing applications requiring ground truth measurements.
机译:大多数材料显示峰值强度与相位(光源-目标-检测器角度)的关系曲线。对于源和/或检测器的不可忽略的角孔径,在零相位及其附近的测量强度(反向散射)低于真实相位。我们得出一个代表这种效果的平均孔径积分,然后我们将测得的强度值求反,以获得实际的强度曲线。我们还给出了用于估算零相位强度测量中的孔径效应幅度的实用公式,并表明仅在不同孔径下进行的两次此类测量就足以得出真实强度。在需要实地测量的遥感应用中,越来越多的验证工作中,在比较测得的反射率时需要进行这些校正。

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