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LIBERTY - Modeling the effects of leaf biochemical concentration on reflectance spectra

机译:自由-模拟叶片生化浓度对反射光谱的影响

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The conifer leaf model LIBERTY (Leaf Incorporating Biochemistry Exhibiting Reflectance and Transmittance Yields) is an adaptation of radiative transfer theory for determining the optical properties of powders. LIBERTY provides a simulation, at a fine spectral resolution, of quasiinfinite leaf reflectance (as represented by stacked leaves) and single leaf reflectance. Single leaf reflectance and transmittance are important input variables to vegetation canopy reflectance models. A prototype parameterization of LIBERTY was based upon measurements of pine needles and known absorption coefficients of pure component leaf biochemicals. The estimated infinite-reflectance output was compared with the spectra of both dried and fresh pine needles with root mean square errors (RMSE) of 2.87% and 1.73%, respectively. The comparisons between measured and estimated reflectance and transmittance values for single needles were also very accurate with RMSE of 1.84% and 1.12%, respectively. Initial inversion studies have demonstrated that significant improvements can be made to LIBERTY by utilizing in vivo adsorption coefficients which have been determined by the inversion process. These results demonstrate the capability of LIBERTY to model accurately the spectral response of pine needles. (C) Elsevier Science Inc., 1998. [References: 39]
机译:针叶树模型LIBERTY(结合了生化的叶片表现出反射率和透射率)是辐射传递理论的一种改进,用于确定粉末的光学特性。 LIBERTY在精细光谱分辨率下提供了拟无限叶片反射率(以堆叠叶片表示)和单叶片反射率的模拟。单叶反射率和透射率是植被冠层反射率模型的重要输入变量。 LIBERTY的原型参数化基于松针的测量和纯净的叶片生化试剂的已知吸收系数。将估计的无限反射输出与干松针和新鲜松针的光谱进行比较,其根均方根误差(RMSE)分别为2.87%和1.73%。单个针的反射率和透射率测量值与估计值之间的比较也非常准确,RMSE分别为1.84%和1.12%。初步的反演研究表明,通过利用反演过程确定的体内吸附系数,可以大大改善LIBERTY。这些结果表明,LIBERTY能够准确地建模松针的光谱响应。 (C)Elsevier Science Inc.,1998年。[参考:39]

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