2023
DOI: 10.1016/j.jag.2022.103147
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FluoCat: A cable-suspended multi-sensor system for the vegetation SIF Cal/Val monitoring and estimation of effective sunlit surface fluorescence

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Cited by 3 publications
(5 citation statements)
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“…A multisensor cable-suspended motorized platform (UAV Works, Valencia, Spain) called FluoCat (Figure 1B) was used to monitor the transects in the vegetation area. This platform was specifically designed to measure solar-induced fluorescence and provide additional data for the interpretation of fluorescence emission [36]. It is equipped with the Piccolo Doppio dual spectrometer system (GeoSciences, University of Edinburgh, Edinburgh, UK), a MAIAS2 multispectral camera with the ILS irradiance sensor module (SAL Engineering, Russi, Italy), and a TeAx Thermal Capture Fusion camera (TeAx Technology, Wilnsdorf, Germany), as shown in Figure 2.…”
Section: Multisensor Setup and Transect Sampling Protocolmentioning
confidence: 99%
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“…A multisensor cable-suspended motorized platform (UAV Works, Valencia, Spain) called FluoCat (Figure 1B) was used to monitor the transects in the vegetation area. This platform was specifically designed to measure solar-induced fluorescence and provide additional data for the interpretation of fluorescence emission [36]. It is equipped with the Piccolo Doppio dual spectrometer system (GeoSciences, University of Edinburgh, Edinburgh, UK), a MAIAS2 multispectral camera with the ILS irradiance sensor module (SAL Engineering, Russi, Italy), and a TeAx Thermal Capture Fusion camera (TeAx Technology, Wilnsdorf, Germany), as shown in Figure 2.…”
Section: Multisensor Setup and Transect Sampling Protocolmentioning
confidence: 99%
“…The fibre optics were connected to two spectroradiometers, one covering the entire VNIR spectral range from 400 to 1180 nm, with a spectral resolution of ~1.5 nm, and another (called FLUO) covering the spectral range from 640 to 790 nm, with a spectral resolution of ~0.3 nm. The TOC surface reflectance was calculated for both radiometers using the signal captured from the upwelling and downwelling channels as described in [36]. The VNIR measurement was used to spectrally parameterise the vegetation, and the FLUO was used to retrieve the SIF.…”
Section: Multisensor Setup and Transect Sampling Protocolmentioning
confidence: 99%
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“…Moreover, Tagliabue et al [27] showed that in mixed forests, spatial heterogeneity plays a crucial role in controlling the relationship between far-red SIF and GPP. Moncholi-Estornell et al [28] showed that normalizing the SIF signal emitted from the top of the canopy by the fractional cover of sunlit vegetation improves the estimation of the effective fluorescence flux, reducing the error from 36% to 18% (red fluorescence) and from 24% to 6% (far-red fluorescence), respectively. These studies show how an inaccurate characterization of the spatial heterogeneity of a fluorescence pixel can lead to errors in the estimation of the fluorescence signal.…”
Section: Introductionmentioning
confidence: 99%