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Use of semi-empirical and radiative transfer models to estimate biophysical parameters in a sparse canopy forest

机译:使用半实验和辐射转移模型来估算稀疏冠层林中的生物物理参数

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Knowledge of the characteristics of the vegetation cover is of great interest due to its role in the mass and energy exchanges at the surface/atmosphere interface (e.g. water and carbon cycles). This study is part of DARFEM experiments, EU-funded HySens project (DLR), designed to provide a better understanding of the capability of airborne hyperspectral and directional observations to retrieve biophysical vegetation parameters. Different airborne hyperspectral data were acquired in late June 2001 on the experimental site, a poplar plantation belonging to CARBOEUROFLUX network, located in Northern Italy. An intensive field campaign was accomplished during the aerial survey to collect vegetation parameters and radiometric measurements. Leaf area index (LAI) and vegetation fractional cover (Fc), were retrieved from remote sensing data by statistical relationships with ground measurements. A radiative transfer model was used in direct mode to simulate and analyse the canopy spectral signature changesfor varying overstory LAI and different understory conditions. In order to minimize the influence of the extensive understory vegetation on the relationship between spectral Vegetation Index (VI) and LAI, an optical index exploiting short wave infrared(SWIR) was evaluated. A comparison of different Vis performance is presented and relative advantages and drawbacks of SWIR exploitation are discussed.
机译:由于其在表面/大气界面(例如水和碳循环)的质量和能量交换中的作用,植被覆盖的特征知识具有很大的兴趣。本研究是欧盟资助的众议硕士项目(DLR)的一部分,旨在更好地了解空中高光谱和定向观察的能力,以检索生物物理植被参数。不同的空中高光谱数据于2001年6月至2001年6月在实验遗址上获得,位于意大利北部的糖类肺症网络属于碳水化合物种植园。在空中调查期间完成了一项强化场运动,以收集植被参数和辐射测量。叶面积指数(LAI)和植被分数盖(FC)通过与地面测量的统计关系从遥感数据中检索。用于直接模式使用辐射转移模型来模拟和分析不同夸张赖的冠层谱签名改变和不同的林下条件。为了最大限度地减少广泛的林植植被对光谱植被指数(VI)和LAI之间关系的影响,评估了利用短波红外(SWIR)的光学指数。提出了不同的VIS性能的比较,讨论了SWIR剥削的相对优势和缺点。

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