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Analysis of hyperspectral data for estimation of temperate forest canopy nitrogen concentration: comparison between an airborne (AVIRIS) and a spaceborne (Hyperion) sensor

机译:用于估计温带森林冠层氮浓度的高光谱数据分析:机载(AVIRIS)和天载(Hyperion)传感器之间的比较

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Field studies among diverse biomes demonstrate that mass-based nitrogen concentration at leaf and canopy scales is strongly related to carbon uptake and cycling. Combined field and airborne imaging spectrometry studies demonstrate the capacity for accurate empirical estimation of forest canopy N concentration and other biochemical constituents at scales from forest stands to small landscapes. In this paper, we report on the utility of the first space-based imaging spectrometer, Hyperion, for estimation of temperate forest canopy N concentration as compared to that achieved with the airborne high-altitude imaging spectrometer, the Airborne Visible/Infrared Imaging Spectrometer (AVIRIS). Overall accuracy of Hyperion estimates of forest canopy N concentration, as compared with field measurements, were within 0.25% dry mass, and AVIRIS-based estimates were within 0.19% dry mass, each well within the accuracy required to distinguish among forested ecosystems in nitrogen status.
机译:在各种生物群落中进行的田间研究表明,基于质量的叶片和冠层氮素浓度与碳吸收和循环密切相关。野外和机载成像光谱学的结合研究表明,从林分到小景观的尺度,可以准确地凭经验估算森林冠层氮浓度和其他生化成分的能力。在本文中,我们报告了第一种太空成像光谱仪Hyperion与机载高空成像光谱仪,机载可见/红外成像光谱仪( AVIRIS)。与实地测量相比,Hyperion对森林冠层N浓度估算的总体准确性在干质量的0.25%以内,基于AVIRIS的估算在干质量的0.19%以内,每口井都在区分氮状态下的森林生态系统所需的精度内。

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