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A THEORETICAL ASSESSMENT OF THE RELATION BETWEEN WOODY CANOPY COVER AND RED REFLECTANCE

机译:木冠层与红色反射率关系的理论评估

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Several studies have demonstrated the potential of brightness indices, especially red band reflectance, from Earth resources satellite sensors to estimate vegetation canopy cover and biomass in semiarid savannas as well as in boreal forests. These studies showed that the relation between woody canopy cover and red reflectance varies with geographical location, season, and other factors. This paper models the relation between woody canopy cover and red reflectance, using two simple geometric canopy models developed by Li-Strahler and Jasinski, respectively. Model simulations show that the relation between woody canopy cover and red band reflectance is sensitive to changes in background reflectance, canopy reflectance, solar zenith angle, and topography, which together determine the intercept, slope, and linearity of the relation. The model results provide a theoretical framework that serves as a guide for the most effective conditions for the use of reflectance measurements to estimate canopy cover to be selected a priori. It is predicted that woody canopy cover is best estimated with the use of red band measurements acquired at a solar zenith angle less than 30 degrees in a season when the contrast between background reflectance and canopy reflectance is the largest during the year. (C)Elsevier Science Inc., 1997. [References: 54]
机译:多项研究表明,来自地球资源卫星传感器的亮度指数(尤其是红波段反射率)可用于估算半干旱稀树草原和北方森林中的植被冠层覆盖量和生物量。这些研究表明,木质冠层覆盖度与红色反射率之间的关系随地理位置,季节和其他因素而变化。本文分别使用Li-Strahler和Jasinski开发的两个简单的几何冠层模型来模拟木质冠层覆盖度与红色反射率之间的关系。模型仿真表明,木质冠层覆盖率与红带反射率之间的关系对背景反射率,冠层反射率,太阳天顶角和地形的变化敏感,共同决定了该关系的截距,斜率和线性。模型结果提供了一个理论框架,可作为最有效条件的指南,该条件用于使用反射率测量来估计先验选择的冠层覆盖率。可以预测,当一年中背景反射率和树冠反射率之间的对比最大时,使用太阳峰顶角小于30度的红色波段测量值可以最好地估计木质树冠的覆盖度。 (C)Elsevier Science Inc.,1997年。[参考:54]

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