DocumentCode
27361
Title
A Method for Uncertainty Assessment of Passive Sun-Induced Chlorophyll Fluorescence Retrieval Using an Infrared Reference Light
Author
Burkart, Andreas ; Schickling, Anke ; Mateo, Maria Pilar Cendrero ; Wrobel, Thomas Jan ; Rossini, Micol ; Cogliati, Sergio ; Julitta, Tommaso ; Rascher, Uwe
Author_Institution
Inst. of Bio-& Geosci. Plant Sci., Forschungszentrum Julich GmbH, Julich, Germany
Volume
15
Issue
8
fYear
2015
fDate
Aug. 2015
Firstpage
4603
Lastpage
4611
Abstract
Measurements of sun-induced chlorophyll fluorescence (SIF) over plant canopies provide a proxy for plant photosynthetic capacity and are of high interest for plant research. Together with spectral reflectance, SIF has the potential to act as a noninvasive approach to quantify photosynthetic plant traits from field to air and spaceborne scales. However, SIF is a small signal contribution to the reflected sunlight and often not distinguishable from sensor noise. SIF estimation is, therefore, affected by an unquantified uncertainty, making it difficult to estimate accurately how much SIF is truly emitted from the plant. To investigate and overcome this, we designed a device based on a spectrometer covering the visible range and equipped it with an LED emitting at the wavelength of SIF. Using this as a reference and applying thorough calibrations, we present consistent evidence of the instrument´s capability of SIF retrieval and accuracy estimations. The LED´s intensity was measured under sunlight with 1.27 ± 0.27 mW × sr-1m-2nm-1 stable over the day. The large increase of SIF due to the Kautsky effect was measured spectrally and temporally proving the biophysical origin of the signal. We propose rigorous tests for instruments intended to measure SIF and show ways to further improve the presented methods.
Keywords
bio-optics; biological techniques; botany; fluorescence; light emitting diodes; sunlight; uncertainty handling; Kautsky effect; SIF estimation; calibration; infrared reference light; passive sun induced chlorophyll fluorescence retrieval; plant canopies; sensor noise; spectral reflectance; spectrometer; uncertainty assessment; Calibration; Fluorescence; Light emitting diodes; Noise; Power measurement; Reflectivity; Temperature measurement; Chlorophyll; LED; chlorophyll; fluorescence; reference; spectroscopy;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2015.2422894
Filename
7086007
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