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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >A method for improving hotspot directional signatures in BRDF models used for MODIS
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A method for improving hotspot directional signatures in BRDF models used for MODIS

机译:一种用于MODIS的BRDF模型中改进热点方向签名的方法

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The semi-empirical, kernel-driven, linear RossThick-LiSparseReciprocal (RTLSR) Bidirectional Reflectance Distribution Function (BRDF) model is used to generate the routine MODIS BRDF/Albedo product due to its global applicability and the underlying physics. A challenge of this model in regard to surface reflectance anisotropy effects comes from its underestimation of the directional reflectance signatures near the Sun illumination direction; also known as the hotspot effect. In this study, a method has been developed for improving the ability of the RTLSR model to simulate the magnitude and width of the hotspot effect. The method corrects the volumetric scattering component of the RTLSR model using an exponential approximation of a physical hotspot kernel, which recreates the hotspot magnitude and width using two free parameters (C-1 and C-2, respectively). The approach allows one to reconstruct, with reasonable accuracy, the hotspot effect by adjusting or using the prior values of these two hotspot variables. Our results demonstrate that: (1) significant improvements in capturing hotspot effect can be made to this method by using the invested hotspot parameters; (2) the reciprocal nature allow this method to be more adaptive for simulating the hotspot height and width with high accuracy, especially in cases where hotspot signatures are available; and (3) while the new approach is consistent with the heritage RTLSR model inversion used to estimate intrinsic narrowband and broadband albedos, it presents some differences for vegetation clumping index (CI) retrievals. With the hotspot-related model parameters determined a priori, this method offers improved performance for various ecological remote sensing applications; including the estimation of canopy structure parameters. (C) 2016 Elsevier Inc. All rights reserved.
机译:半经验的,内核驱动的线性RossThick-LiSparseReciprocal(RTLSR)双向反射分布函数(BRDF)模型由于其全球适用性和基础物理特性而用于生成常规的MODIS BRDF / Albedo产品。该模型在表面反射率各向异性效应方面的挑战来自其对太阳光照方向附近的方向反射率特征的低估。也称为热点效应。在这项研究中,已开发出一种方法来提高RTLSR模型模拟热点效应的大小和宽度的能力。该方法使用物理热点内核的指数近似来校正RTLSR模型的体积散射分量,该方法使用两个自由参数(分别为C-1和C-2)重新创建热点的大小和宽度。该方法允许人们通过调整或使用这两个热点变量的先验值来以合理的精度重建热点效应。我们的结果表明:(1)通过使用所投入的热点参数,可以对该方法的捕获热点效果进行重大改进; (2)倒数性质使该方法可以更准确地模拟热点高度和宽度,特别是在有热点特征的情况下; (3)虽然新方法与用于估计固有窄带和宽带反照率的传统RTLSR模型反演是一致的,但它为植被丛集指数(CI)的提取带来了一些差异。通过事先确定与热点相关的模型参数,该方法可为各种生态遥感应用提供改进的性能;包括冠层结构参数的估计。 (C)2016 Elsevier Inc.保留所有权利。

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