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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Leaf BRDF measurements and model for specular and diffuse components differentiation
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Leaf BRDF measurements and model for specular and diffuse components differentiation

机译:叶片BRDF测量和模型,用于镜面和扩散成分的区分

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This paper aims to link the spectral and directional variations of the leaf Bidirectional Reflectance Distribution Function (BRDF) by differentiating specular and diffuse components. To do this, BRDF of laurel (Prunus laurocesarus), European beech (Fagus silvatica) and hazel (Corylus avelland) leaves were measured at 400 wavelengths' evenly spaced over the visible (VIS) and near-infrared (NIR) domains (480-880 nm) and at 400 source-leaf-sensor configurations. Measurement analysis suggested a spectral invariance of the specular component, the directional shape of which was mainly driven by leaf surface roughness. A three-parameter physically based model was fitted on the BRDF at each wavelength, confirming the spectral invariance of the specular component in the VIS, followed by a slight deterioration in the NIR. Due to this component, the amount of reflected light which did not penetrate into the leaf, could be considered as significant at wavelengths of chlorophyll absorption. Finally, by introducing the PROSPECT model, we proposed a five-parameter model to simulate leaf spectral and bidirectional reflectance in the VIS-NIR.
机译:本文旨在通过区分镜面反射分量和散射分量来链接叶片双向反射分布函数(BRDF)的光谱和方向变化。为此,对月桂树(Prunus laurocesarus),欧洲山毛榉(Fagus silvatica)和榛树(Corylus avelland)叶片的BRDF在可见(VIS)和近红外(NIR)域均匀分布的400个波长下进行了测量(480- 880 nm)和400种源叶传感器配置。测量分析表明,镜面反射分量的光谱不变性,其方向形状主要由叶片表面粗糙度驱动。在每个波长的BRDF上安装了一个基于物理参数的三参数模型,确认了VIS中镜面反射分量的光谱不变性,随后NIR略有下降。由于该成分,在叶绿素吸收的波长下,未渗透到叶片中的反射光量可以认为是显着的。最后,通过介绍PROSPECT模型,我们提出了一个五参数模型来模拟VIS-NIR中的叶片光谱和双向反射率。

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