基于主平面测量的玉米叶片双向反射参数化

C. Lao, Yan Guo, B. Li
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引用次数: 10

摘要

在冠层辐射传输模型中,单叶的双向反射率分布特征是至关重要的。在反射半球上测量双向反射是一项非常复杂和耗时的工作。考虑到叶片的反射是镜面和漫反射的线性组合,其中镜面反射在主平面上以镜面方向为中心,漫反射在任何方向上都是均匀的,我们尝试从叶片主平面上的反射角分布来参数化叶片反射率半球上的双向反射分布函数(BRDF)。采用自行设计的装置测量了玉米叶片在反射率半球上的角反射率。分别以650 nm和830 nm两个波长,0°、30°和60°三个入射角照射叶片。在主平面上测量的反射用基于物理的BRDF模型来模拟BRDF。它们被用来预测主平面以外其他方向的反射。预测的反射与实测的很好地吻合。这表明主平面反射分布携带了足够的信息来表征半球上的BRDF。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parameterization of Bidirectional Reflection from Maize Leaves with Measurement in the Principal Plane
Characterization of bidirectional reflectance distribution of individual leaf is essential in canopy radiative transfer modeling. Measuring bidirectional reflection over reflectance hemisphere is a very complex and time-consuming work. Considering that leaf's reflection is a linear combination of specular and diffuse component, where specular reflection is centered on mirror direction in the principal plane and diffuse reflection is uniform regardless of directions, we made an attempt to parameterize Bidirectional Reflectance Distribution Function (BRDF) over reflectance hemisphere from angular distribution of reflection in its principal plane. Angular reflection of maize (Zea mays L) leaves over reflectance hemisphere was measured with a custom-designed device. The leaves were illuminated with two wavelengths of 650 nm and 830 nm, at three incidence angles of 0deg, 30deg and 60deg. Reflection measured in the principal plane was used to model BRDF with a physically based BRDF model. They were used to predict the reflection in other directions outside the principal plane. The predicted reflection was in a good agreement with those measured. It indicates that reflection distribution in the principal plane carries sufficient information to characterize the BRDF over hemisphere.
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