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植被二向性反射统一模型 被引量:8
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作者 徐希孺 范闻捷 +2 位作者 李举材 赵鹏 陈高星 《中国科学:地球科学》 CSCD 北大核心 2017年第2期217-232,共16页
植被二向性反射模型是植被定量遥感的基础.植被反射率可以且必须表达成一次散射贡献项ρ~1与多次散射贡献项ρ~m之和,两者在2π空间中的行为特征不同,只有这样才能正确阐明太阳直射与天空漫射对ρ~1与ρ~m的不同贡献.在对现有模型分析... 植被二向性反射模型是植被定量遥感的基础.植被反射率可以且必须表达成一次散射贡献项ρ~1与多次散射贡献项ρ~m之和,两者在2π空间中的行为特征不同,只有这样才能正确阐明太阳直射与天空漫射对ρ~1与ρ~m的不同贡献.在对现有模型分析的基础上,本文取长补短给出了适用于不同入射光条件和植被类型的ρ~1与ρ~m解析表达.首先,基于几何光学原理,把立足点由树冠移至植被元素,ρ~1的非各向同性特征可以归因为太阳-目标-传感器三者间的几何关系、多尺度群聚叠加和太阳直射与天空散射对目标辐照度之比三个方面.视不同植被类型为多尺度群聚叠加的结果,以泊松分布为基础,本文重新给定了四分量面积比例的求取方法,使之适用于各种植被类型,进而获得ρ~1的近似解析表达式.假定G=0.5,借助"再碰撞概率"理论,考虑了冠层内部、冠层与土壤间的多次散射过程,本文也获得了不同天空散射光条件下ρ~m的近似解析式,并揭示了ρ~m的形成原理.利用玉米冠层BRDF数据及加拿大黑杉林BRDF数据对模型的可靠性进行了初步验证,结果表明统一模型可行. 展开更多
关键词 植被brdf 统一模型 聚集指数 太阳直射与天空漫射辐照度比例 再碰撞概率
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A unified model of bidirectional reflectance distribution function for the vegetation canopy 被引量:6
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作者 XU XiRu FAN WenJie +2 位作者 LI JuCai ZHAO Peng CHEN GaoXing 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第3期463-477,共15页
An accurate and operational bidirectional reflectance distribution function (BDRF) canopy model is the basis of quantitative vegetation remote sensing. The canopy reflectance should be approximated as the sum of the... An accurate and operational bidirectional reflectance distribution function (BDRF) canopy model is the basis of quantitative vegetation remote sensing. The canopy reflectance should be approximated as the sum of the single scattering reflectance arising from the sun, pl, and the multiple scattering reflectance arising from the canopy, fin, as their directional characteristics are dramatically different. Based on the existing BRDF model, we obtain a new analytical expression of ρ1 and ρm in this paper, which is suitable for different illumination conditions and different vegetation canopies. According to the geometrical optic model at the leaf scale, the anisotropy of ρ1 can be ascribed to the geometry of the object, sun and the sensor, multiple scale clumping, and the fraction of direct solar radiation and diffuse sky radiation. Then, we parameterize the area ratios of four components: the sunlit foliage, sunlit ground, shadow foliage and shadow ground based on a Poisson distribution, and develop a new approximate analytical single scattering reflectance model. Assuming G=0.5, a recollision probability theory based scattering model is developed which considers the effects of diffuse sky radiation, scattering inside the canopy and rebounds between the canopy and soil. Validation using ground measurements of maize and black spruce forest proves the reliability of the model. 展开更多
关键词 Vegetation brdf Unified model Clumping Index Proportion of direct solar radiation and diffuse sky radiation Recollision probability
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