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Setup and validation of a new multi-angle multi-spectrum kernel- driven model

机译:新型多角度和多频谱内核驱动模型的设置和验证

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The linear kernel-driven model combines the advantage of empirical models and physical models. With the simple form which is convenience for inversion, it is widely used in bidirectional reflectance and land surface albedo research. At present, the kernels are expressed as function of incident and viewing geometry, not related to wavelength. With the support of spectrum database, we make use of the a priori knowledge of the soil and leaf spectrum to derive the new kernel function by rewriting the LiSparse kernel and the RossThick. After adding wavelength into kernels as driven variable, the weights of kernel or we call it kernel coefficients are independent from wavelength. The weight of kernels or describes the relationship between the pixel and sub pixel and can be used to built forward model to caculate short wave albedo. We retrieved kernel weights with the measured BRDF of winter wheat canopy. Results show that the weights of the kernels are solely related with the canopy structure, and the inversion results with multi-band data are much more stable than that with single band data when numbers of angular samples are limited.
机译:线性内核驱动模型结合了经验模型和物理模型的优势。通过简单的形式,方便反转,广泛应用于双向反射率和陆地表面Albedo研究。目前,核表示为事件和观察几何形状的功能,与波长无关。通过对频谱数据库的支持,我们利用土壤和叶谱的先验知识来通过重写Lisparse内核和Rossthick来获得新的内核功能。在作为驱动变量的核中添加波长后,内核或我们称之为核系数的重量与波长无关。内核的重量或描述像素和子像素之间的关系,并且可用于构建模型以缩短Wave Albedo。我们用冬小麦冠层的测量BRDF检索核重量。结果表明,当角样品的数量有限有限时,多频带数据的反转结果与单频带数据相比,内核的重量与冠层结构完全是稳定的。

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