首页> 外文会议>2017 IEEE International Geoscience and Remote Sensing Symposium >Oxygen transmittance correction for solar-induced chlorophyll fluorescence measured on proximal sensing: Application to the NASA-GSFC fusion tower
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Oxygen transmittance correction for solar-induced chlorophyll fluorescence measured on proximal sensing: Application to the NASA-GSFC fusion tower

机译:氧气透过率校正在近距离传感上测量的太阳诱导叶绿素荧光:在NASA-GSFC融合塔中的应用

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Since oxygen (O2) absorption of light becomes more pronounced at higher pressure levels, even a few meters distance between the target and the sensor can strongly affect canopy-leaving Solar-Induced chlorophyll Fluorescence (SIF) retrievals. This study was conducted to quantify the consequent error propagation and the impact of ignoring oxygen absorption effects on proximal sensing SIF measurements based on the O2-A absorption band with field-acquired and simulated data. It was demonstrated that the uncorrected oxygen transmittance between target and sensor distance of 10 m can lead to SIF relative errors ranging from 66% to higher than 100% when using a Spectral Fitting (SF) technique or the 3FLD retrieval method, respectively. A proposed strategy to include oxygen transmittance effects on the well-known 3FLD and SF techniques is presented here and applied to the NASA-GSFC multi-angular spectral system known as FUSION over a field of corn plants (Zea mays L.) during the second half of the 2014 growing season. Daily averages of oxygen-corrected SIF measurements from FUSION were related to daily averages of heat and energy fluxes obtained from a nearby Eddy-Covariance (EC) flux tower, and showed a consistent behaviour with similar experiments performed at leaf level.
机译:由于在较高的压力水平下氧气(O 2 )的吸收会更加明显,因此目标与传感器之间即使只有几米的距离也会强烈影响冠层离开的太阳诱导的叶绿素荧光(SIF)检索。这项研究是基于O 2 -A吸收带和现场获得的模拟数据,量化由此引起的误差传播以及忽略氧吸收效应对近端传感SIF测量的影响。结果表明,当使用光谱拟合(SF)技术或3FLD检索方法时,目标和传感器之间10 m距离之间未经校正的氧气透射率会导致SIF相对误差范围从66%到高于100%。本文介绍了拟议的策略,其中包括对众所周知的3FLD和SF技术的氧气透射率影响,并将其应用于第二次玉米田(Zea mays L.)上被称为FUSION的NASA-GSFC多角度光谱系统2014年生长季节的一半。来自FUSION的经过氧气校正的SIF测量的每日平均值与从附近的涡流-协方差(EC)通量塔获得的热量和能量通量的每日平均值相关,并且与在叶水平进行的类似实验显示出一致的行为。

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