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Assessment of the Hotspot Effect for the PROSAIL Model With POLDER Hotspot Observations Based on the Hotspot-Enhanced Kernel-Driven BRDF Model

机译:基于热点增强核驱动BRDF模型的POLDER热点观测值对PROSAIL模型的热点效果评估

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The hotspot effect is a typical angular reflectance signature of vegetation canopies and contains important information for the retrieval of vegetation structural parameters. To date, the hotspot effect of various analytical bidirectional reflectance distribution function (BRDF) models (e.g., the PROSAIL model) has rarely been assessed by multiangular measurements with sufficient hotspot observations due to the lack of accurate hotspot measurements (for field measurements) or appropriate methods (for airborne and spaceborne measurements). In this paper, we develop a method to further improve the hotspot effect of the kernel-driven model and design a framework to utilize the improved kernel-driven model as a bridge to assess the hotspot effect of the PROSAIL model with Polarization and Directionality of the Earth Reflectance (POLDER) hotspot observations. The results indicate that the proposed method further improves the fits between the models and the observations in the vicinity of the hotspot direction, particularly in the rare situations where the geometric-optical scattering component governs the target reflectance. In addition, the hotspot signature indicated by the PROSAIL multiangular data shows a larger variability than that of POLDER observations. C-1 and C-2 in the improved kernel-driven model can be used as benchmarked parameters to qualify the amplitude and width of the hotspot effect for the simulated multiangular data of physical BRDF models and thus present the potential for the assessment and analysis of the hotspot effect of physical models, which, in return, helps retrieve the structural parameters of vegetation canopies from hotspot signatures.
机译:热点效应是植被冠层的典型角反射特征,并且包含用于检索植被结构参数的重要信息。迄今为止,由于缺乏准确的热点测量值(用于现场测量)或适当的方法,很少通过具有足够热点观察值的多角度测量来评估各种分析双向反射率分布函数(BRDF)模型(例如PROSAIL模型)的热点效果方法(用于空中和太空测量)。在本文中,我们开发了一种进一步改善内核驱动模型的热点效应的方法,并设计了一个框架,利用改进的内核驱动模型作为桥梁,以评估PROSAIL模型的极化效应和方向性。地球反射(POLDER)热点观测。结果表明,所提出的方法进一步改善了模型与热点方向附近观测值之间的拟合度,特别是在几何光学散射分量控制目标反射率的罕见情况下。此外,由PROSAIL多角度数据指示的热点特征显示出比POLDER观测值更大的变异性。改进的核驱动模型中的C-1和C-2可以用作基准参数,以限定物理BRDF模型的模拟多角度数据的热点效应的幅度和宽度,从而为评估和分析BDF提供了潜力物理模型的热点效应,从而有助于从热点特征中检索植被冠层的结构参数。

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