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The structure of red-infrared scattergrams of semivegetated landscapes

机译:半植被景观的红红外散点图的结构

摘要

A physically based linear stochastic geometric canopy soil reflectance model is presented for characterizing spatial variability of semivegetated landscapes at subpixel and regional scales. Landscapes are conceptualized as stochastic geometric surfaces, incorporating not only the variability in geometric elements, but also the variability in vegetation and soil background reflectance which can be important in some scenes. The model is used to investigate several possible mechanisms which contribute to the often observed characteristic triangular shape of red-infrared scattergrams of semivegetated landscapes. Scattergrams of simulated and semivegetated scenes are analyzed with respect to the scales of the satellite pixel and subpixel components. Analysis of actual aerial radiometric data of a pecan orchard is presented in comparison with ground observations as preliminary confirmation of the theoretical results.
机译:提出了基于物理的线性随机几何冠层土壤反射率模型,用于表征亚像素和区域尺度上半植被景观的空间变异性。景观被概念化为随机的几何表面,不仅包含几何元素的可变性,还包含植被和土壤背景反射率的可变性,这在某些场景中可能很重要。该模型用于研究几种可能的机制,这些机制有助于经常观察到的半植被景观的红色红外散点图的特征三角形形状。针对卫星像素和子像素分量的比例,分析了模拟和半植被场景的散点图。美国山核桃果园的实际航空辐射数据的分析与地面观测结果进行了比较,作为对理论结果的初步确认。

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