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A unified vegetation index for quantifying the terrestrial biosphere

机译:量化陆地生物圈的统一植被指数

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Empirical vegetation indices derived from spectral reflectance data are widely used in remote sensing of the biosphere, as they represent robust proxies for canopy structure, leaf pigment content, and, subsequently, plant photosynthetic potential. Here, we generalize the broad family of commonly used vegetation indices by exploiting all higher-order relations between the spectral channels involved. This results in a higher sensitivity to vegetation biophysical and physiological parameters. The presented nonlinear generalization of the celebrated normalized difference vegetation index (NDVI) consistently improves accuracy in monitoring key parameters, such as leaf area index, gross primary productivity, and sun-induced chlorophyll fluorescence. Results suggest that the statistical approach maximally exploits the spectral information and addresses long-standing problems in satellite Earth Observation of the terrestrial biosphere. The nonlinear NDVI will allow more accurate measures of terrestrial carbon source/sink dynamics and potentials for stabilizing atmospheric CO 2 and mitigating global climate change.
机译:源自光谱反射数据的经验植被指数广泛用于生物圈的遥感,因为它们代表了冠层结构,叶片颜料含量,随后,植物光合势的鲁棒代理。在这里,我们通过利用所涉及的光谱通道之间的所有高阶关系来概括广泛的常用植被指数。这导致植被生物物理和生理参数更高的敏感性。所呈现的标准化差异植被指数(NDVI)的呈现的非线性概括始终如一地提高监测关键参数的准确性,例如叶面积指数,初级生产力和阳光诱导的叶绿素荧光。结果表明,统计方法最大限度地利用光谱信息,并解决了陆地生物圈卫星地球观察中的长期问题。非线性NDVI将允许更准确的陆地碳源/水槽动态测量和稳定大气二氧化碳二氧化碳的潜力,并减轻全球气候变化。

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