Search results for "Sentinel-3"

showing 10 items of 15 documents

The flex end-to-end simulator: From concept phase (A/B1) to ground segment and operations (C/D)

2018

ESA's FLEX/Sentinel-3 tandem mission aims at mapping Sun-induced fluorescence (SIF) as a proxy to quantify photosynthetic activity of terrestrial vegetation. Due to the complexity of the mission concept and stringent requirements for the data processing algorithms, ESA developed a Phase A/B1 End-to-End Mission Performance Simulator (E2ES) tool to reproduce the expected mission performance and check the mission and instrument concepts. In the current Phase C/D, the E2ES concept must evolve to consolidate the whole data processing chain, providing an accurate figures of the whole mission error budget and serving as a roadmap for the future development of FLEX Ground Segment. This paper gives …

0106 biological sciencesproductivityComputer scienceFIS/06 - FISICA PER IL SISTEMA TERRA E PER IL MEZZO CIRCUMTERRESTRE0211 other engineering and technologiesGEO/12 - OCEANOGRAFIA E FISICA DELL'ATMOSFERA02 engineering and technologyMission simulator01 natural sciencesFLEXremote sensingEnd-to-end principleHyperspectralvegetationSun-induced chlorophyll fluorescenceSoftware designRadiometryFLEXfluorescenceGround segmentSentinel-3Simulation010606 plant biology & botany021101 geological & geomatics engineering
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Design of a generic end-to-end mission performance simulator and application to the performance analysis of the FLEX/Sentinel-3 mission

2016

La Observación de la Tierra mediante técnicas de teledetección con instrumentos ópticos en satélite tiene como objetivo monitorizar los procesos bio-geofísicos en la superficie y atmósfera terrestre, adquiriendo datos a diferentes longitudes de onda del espectro electromagnético. Con el fin de asegurar el mantenimiento de las observaciones y las capacidades para entender el sistema Tierra, nuevas misiones satelitales están siendo desarrolladas por agencias espaciales nacionales e internacionales así como organizaciones de investigación. En este contexto, los simuladores de misiones espaciales (E2ES por sus siglas en inglés, End-to-End Mission Performance Simulator) ofrecen a los científicos…

:FÍSICA::Óptica ::Espectroscopía [UNESCO]flexpassive optical instrumentssentinel-3:CIENCIAS TECNOLÓGICAS::Tecnología del espacio ::Satélites artificiales [UNESCO]satellite:CIENCIAS DE LA TIERRA Y DEL ESPACIO [UNESCO]UNESCO::CIENCIAS TECNOLÓGICAS::Tecnología del espacio ::Satélites artificialesearth observationend-to-end mission simulatorUNESCO::FÍSICA::Óptica ::Espectroscopíasun-induced chlorophyll fluorescenceUNESCO::CIENCIAS DE LA TIERRA Y DEL ESPACIO
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Sentinel-3/FLEX Biophysical Product Confidence Using Sentinel-2 Land-Cover Spatial Distributions

2021

The estimation of biophysical variables from remote sensing data raises important challenges in terms of the acquisition technology and its limitations. In this way, some vegetation parameters, such as chlorophyll fluorescence, require sensors with a high spectral resolution that constrains the spatial resolution while significantly increasing the subpixel land-cover heterogeneity. Precisely, this spatial variability often makes that rather different canopy structures are aggregated together, which eventually generates important deviations in the corresponding parameter quantification. In the context of the Copernicus program (and other related Earth Explorer missions), this article propose…

Atmospheric Science010504 meteorology & atmospheric sciencesComputer sciencevegetation mappingGeophysics. Cosmic physics0211 other engineering and technologiesContext (language use)02 engineering and technologyLand coverearthSentinel-2 (S2)01 natural sciencessentinel-3 (S3)FLEXcharacterizationComputers in Earth SciencesImage resolutionTC1501-1800spatial resolutionBiophysical productsSentinel-3 (S3)021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingQC801-809biophysical productsbiological system modelingSubpixel renderingSpatial heterogeneityOcean engineeringinstrumentsfluorescence EXplorer (FLEX)Spatial ecologyflexible printed circuitssentinel-2 (S2)Spatial variabilityspatial distributionssensor phenomena
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Multitemporal Mosaicing for Sentinel-3/FLEX Derived Level-2 Product Composites

2020

The increasing availability of remote sensing data raises important challenges in terms of operational data provision and spatial coverage for conducting global studies and analyses. In this regard, existing multitemporal mosaicing techniques are generally limited to producing spectral image composites without considering the particular features of higher-level biophysical and other derived products, such as those provided by the Sentinel-3 (S3) and Fluorescence Explorer (FLEX) tandem missions. To relieve these limitations, this article proposes a novel multitemporal mosaicing algorithm specially designed for operational S3-derived products and also studies its applicability within the FLEX…

Atmospheric ScienceSource code010504 meteorology & atmospheric sciencesComputer scienceproduct compositesmedia_common.quotation_subjectGeophysics. Cosmic physics0211 other engineering and technologiesContext (language use)Automatic processing02 engineering and technology01 natural sciencesmosaicingConsistency (database systems)Data acquisitionFLEXProduct (category theory)sentinel-3 (S3Computers in Earth SciencesComposite materialFluorescence explorer (FLEX)fluorescence explorer (FLEX)TC1501-1800Sentinel-3 (S3)021101 geological & geomatics engineering0105 earth and related environmental sciencesmedia_commonQC801-809openaccess dataOcean engineeringCompositingtime seriesopen-access dataIEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
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Retrieving and Validating Leaf and Canopy Chlorophyll Content at Moderate Resolution: A Multiscale Analysis with the Sentinel-3 OLCI Sensor

2021

ESA’s Eighth Earth Explorer mission “FLuorescence EXplorer” (FLEX) will be dedicated to the global monitoring of the chlorophyll fluorescence emitted by vegetation. In order to properly interpret the measured fluorescence signal, essential vegetation variables need to be retrieved concomitantly. FLEX will fly in tandem formation with Sentinel-3 (S3), which conveys the Ocean and Land Color Instrument (OLCI) that is designed to characterize the atmosphere and the terrestrial vegetation at a spatial resolution of 300 m. In support of FLEX’s preparatory activities, this paper presents a first validation exercise of OLCI vegetation products against in situ data coming from the 2018 FLEXSense cam…

Canopy010504 meteorology & atmospheric sciencesScience0211 other engineering and technologiesleaf chlorophyll content02 engineering and technology01 natural sciencesLeaf area indexpixel heterogeneityChlorophyll fluorescenceImage resolution021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingleaf area indexPixelQcanopy chlorophyll contentVegetation15. Life on landSpatial ecologyGeneral Earth and Planetary SciencesEnvironmental scienceSentinel-3ddc:620Scale (map)moderate spatial resolutionleaf chlorophyll content; canopy chlorophyll content; leaf area index; pixel heterogeneity; moderate spatial resolution; Sentinel-3; OLCI; FLEX; HyPlantRemote Sensing
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Towards the quantitative and physically-based interpretation of solar-induced vegetation fluorescence retrieved from global imaging

2021

Due to emerging high spectral resolution, remote sensing techniques and ongoing developments to retrieve the spectrally resolved vegetation fluorescence spectrum from several scales, the light reactions of photosynthesis are receiving a boost of attention for the monitoring of the Earth's carbon balance. Sensor-retrieved vegetation fluorescence (from leaf, tower, airborne or satellite scale) originating from the excited antenna chlorophyll a molecule has become a new quantitative biophysical vegetation parameter retrievable from space using global imaging techniques. However, to retrieve the actual quantum efficiencies, and hence a true photosynthetic status of the observed vegetation, all …

Chlorophyll aquantitative remote sensingPhysiologyEnergy transferBotanyPlant Sciencephotosynthesis monitoringReflectivityFluorescencechemistry.chemical_compoundchemistryQK1-989fluorescence quantum efficiencymedicineEnvironmental scienceflex-sentinel-3 tandem missionSatelliteSpectral resolutionmedicine.symptomScale (map)Vegetation (pathology)Remote sensingPhotosynthetica
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Modelo empírico para la determinación de clorofila-a en aguas continentales a partir de los futuros Sentinel-2 y 3. Validación con imágenes HICO

2014

[EN] Chlorophyll-a concentration is one of the main indicators of inland waters quality. Using CHRIS/PROBA images and in situ data obtained in four lakes in Colombia and Spain, we obtained empirical models for the estimation of chlorophyll-a concentration, which can be directly applied to future images of MSI Sentinel-2 and OLCI Sentinel-3 sensors. The models, based on spectral band indices, were validated with data from the hyperspectral sensor HICO, onboard of the International Space Station.

ChlorophyllChlorophyll aInland watersHICOGeography Planning and DevelopmentEmpirical modellingHyperspectral imagingSpectral bandsCHRIS/PROBAchemistry.chemical_compoundClorofilaGeographychemistryInternational Space StationEarth and Planetary Sciences (miscellaneous)Aguas continentalesSentinel-3Sentinel-2OLCIMSIRemote sensing
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Zvaigžņotā Debess: 2016, Vasara (232)

2016

Contents: “ZVAIGŽŅOTĀ DEBESS” FORTY YEARS AGO: A.Balklavs. New Studies and Conclusions on Nucleus of the Galaxy (abridged) ; U.Dzērvītis. Discussion on Planetary System of Barnard’s Star Continues (abridged) ; M.Eliāss. Meeting of Solar Radio Radiation Section (abridged) ; DEVELOPMENTS in SCIENCE: O.Dumbrājs. Neutrino Oscillations: from the Outset to the Nobel Prize ; R.Misa. Conversation with Andris Ambainis on Quantum Computing Science ; DISCOVERIES: F.Gahbauer. First Direct Detection of Gravitational Waves ; I.Pundure. ATLASGAL Survey of Milky Way Completed ; SPACE RESEARCH and EXPLORATION: J.Jaunbergs. The Story of Pluto’s Satellites ; K.Schwartz. Conducting Ice and Magnetic Field of Ur…

Neitrīno oscilācijas – Nobela prēmijaUrāns un Neptūns – ledus struktūra un magnētiskais lauksLatvijas 66.matemātikas olimpiāde – 3.posma uzdevumiPar Juri Birzvalku – papildinājumsLVU astronomijas studenti – vēstulesDigitalizēts žurnāls “Zvaigžņotā Debess”Baldones observatorijas astrouzņēmumu digitalizācija – asteroīdi pirms to atklāšanas30.jūnijs – Asteroīdu dienaESA pavadonis Sentinel-3A – LU Astronomijas institūta pirmie lāzermērījumiLaboratorijas pētījumi astrofizikaiPiena Ceļa apskats ATLASGALRoberts Makstis – aizmirsts astronomijas popularizētājsLU Astronomijas institūts – eksperiments GREATMārim Jansonam – 80Andris Ambainis par kvantu skaitļošanas zinātniJuris Ekmanis par «Zvaigžņoto Debesi»Akadēmiķis Juris Ekmanis (1941–2016)Saules pulksteņi Latvijā 2011-2015ZA Astrofizikas observatorijai – 70Fizikas profesoram Voldemāram Fricbergam – 90Edgaram Bervaldam – 80:NATURAL SCIENCES::Physics::Astronomy and astrophysics [Research Subject Categories]Debess spīdekļi – 2016. gada vasaraGravitācijas viļņi – novērošanaPlutona pavadoņi – New Horizons attēliCitplanētu un to zvaigžņu nosaukumi15.astronomijas amatieru salidojumsJāzepam Eidusam – 100
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Misión FLEX (Fluorescence Explorer): Observación de la fluorescencia por teledetección como nueva técnica de estudio del estado de la vegetación terr…

2014

[EN] FLEX (Fluorescence EXplorer) is a candidate for the 8th ESA’s Earth Explorer mission. Is the first space mission specifically designed for the estimation of vegetation fluorescence on a global scale. The mission is proposed to fly in tandem with the future ESA´s Sentinel-3 satellite. It is foreseen that the information obtained by Sentinel-3 will be supplemented with that provided by FLORIS (Fluorescence Imaging Spectrometer) onboard FLEX. FLORIS will measure the radiance between 500 and 800 nm with a bandwidth between 0.1 nm and 2 nm, providing images with a 150 km swath and 300 m pixel size. This information will allow a detailed monitoring of vegetation dynamics, by improving the me…

Parámetros biofísicosSpectrometerPixelGeography Planning and DevelopmentBandwidth (signal processing)Vegetation dynamicsFluorescenceFLEXGeographyBiophysical parametersFluorescenciaEarth and Planetary Sciences (miscellaneous)RadianceFLEXSentinel-3Terrestrial vegetationRemote sensingRevista de Teledetección
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A fluorescence retrieval method for the flex sentinel-3 tandem mission

2014

A new fluorescence retrieval method is proposed to support ESA's 8th Earth Explorer Fluorescence EXplorer (FLEX) candidate mission. Most hyperspectral fluorescence retrieval algorithms available in the literature are very sensitive to true reflectance modelization and/or they assume the atmospheric status as known. The proposed algorithm delivers the retrieval of full fluorescence spectrum at canopy level by using only Top Of Atmosphere (TOA) radiances as input. The proposed method starts with (1) the atmospheric correction of TOA radiances, characterizing the state of the atmosphere without assuming any a-priori classification on aerosols models, (2) performing a first estimation of fluore…

Signal processingComputer sciencesynergy productFluorescence retrievalAtmospheric correctionHyperspectral imagingAtmospheric modelFluorescenceFLEXAtmosphereAtmospheric correctionSentinel-3Adaptive opticsAbsorption (electromagnetic radiation)Remote sensing2014 6th Workshop on Hyperspectral Image and Signal Processing: Evolution in Remote Sensing (WHISPERS)
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