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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Detection of Vegetation Light-Use Efficiency Based on Solar-Induced Chlorophyll Fluorescence Separated From Canopy Radiance Spectrum
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Detection of Vegetation Light-Use Efficiency Based on Solar-Induced Chlorophyll Fluorescence Separated From Canopy Radiance Spectrum

机译:基于冠层辐射光谱的太阳诱导叶绿素荧光检测植被光利用效率

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摘要

Photosynthetic light-use efficiency (LUE) is an important indictor of plant photosynthesis, but it is not yet assessable by remote sensing. The recent research on the separation of solar-induced chlorophyll fluorescence (ChlF) from the hyperspectral data indicates the possibility of detecting LUE. In this study, we presented a novel solution for monitoring LUE from hyperspectral data. Experiments at leaf level and canopy level were carried out on winter wheat (C3 plant functional type) on 18 April, 2008 and summer maize (C4 plant functional type) on 5 July, 2008 by synchronously measuring daily canopy radiance spectra and leaf or canopy LUE. The solar-induced chlorophyll fluorescence signals at 760 nm and 688 nm were separated from the reflected radiance spectra based on Fraunhofer lines in two oxygen absorption bands. The results showed that LUE was inversely related to the relative chlorophyll fluorescence. The leaf-level LUE models for winter wheat were built based on relative ChlF at bands of 688 nm $({rm R}^{2}=0.78)$ and 760 nm $({rm R}^{2}=0.64)$, whereas correlation coefficients of the canopy-level LUE models for summer maize on relative ChlF at the same bands were 0.63 and 0.77, respectively.
机译:光合光利用效率(LUE)是植物光合作用的重要指标,但尚不能通过遥感评估。最近从高光谱数据中分离出太阳诱导的叶绿素荧光(ChlF)的研究表明检测LUE的可能性。在这项研究中,我们提出了一种从高光谱数据监测LUE的新颖解决方案。通过同步测量日冠层辐射光谱和叶或冠层LUE,分别于2008年4月18日和2008年7月5日对冬小麦(C3植物功能型)和夏玉米(C4植物功能型)进行了叶水平和冠层水平的试验。 。基于弗劳恩霍夫谱线在两个氧气吸收带中,将太阳诱导的760 nm和688 nm的叶绿素荧光信号与反射辐射光谱分开。结果表明,LUE与相对叶绿素荧光呈负相关。基于688 nm $({rm R} ^ {2} = 0.78)$和760 nm $({rm R} ^ {2} = 0.64)的相对ChlF建立了冬小麦叶级LUE模型。 $,而在相同频段上相对Chlf上夏玉米冠层水平LUE模型的相关系数分别为0.63和0.77。

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