Search results for "Atmospheric correction"

showing 10 items of 84 documents

An angular-dependent split-window equation for SST retrieval from off-nadir observations

2007

An angular-dependent split-window equation is proposed for determining the Sea Surface Temperature (SST) at any observation angle, including large viewing angles at the image edges of satellite sensors with wide swaths. The proposed equation takes into account the angular dependences of the atmospheric correction and also the emissivity correction. An explicit dependence on the SSE is considered in an independent term. The inclusion of such a term is not common in the current operational SST algorithms but we consider it appropriate taking into account the non-blackness of the sea surface emission for large angles and also the dependence on wind speed. The equation has been adapted to the M…

PhysicsBrightnessSea surface temperatureAtmospheric correctionNadirEmissivitySatelliteWind speedAtmospheric opticsRemote sensing2007 IEEE International Geoscience and Remote Sensing Symposium
researchProduct

Methodology for the retrieval of vegetation chlorophyll fluorescence from space in the frame of the flex mission preparatory

2016

FLEX (FLuorescence EXperiment) is a candidate mission for the European Space Agency (ESA) Earth Explorer program. The main objective of the mission is the measurement the chlorophyll fluorescence signal emitted by vegetation at the red and far-red spectral regions (roughly 630-770 nm). The current FLEX mission design includes different instruments intended to provide the appropriate characterization of those atmospheric and surface parameters necessary for the retrieval and interpretation of the fluorescence signal. The complete processing chain for the derivation of fluorescence and reflectance products from the radiance data acquired by the different instruments included in the FLEX paylo…

PixelNoise (signal processing)RadianceAtmospheric correctionFLEXEnvironmental scienceAtmospheric modelSignalSpace explorationRemote sensingInternational Geoscience and Remote Sensing Symposium (IGARSS)
researchProduct

Test of the MODIS Land Surface Temperature and Emissivity Separation Algorithm With Ground Measurements Over a Rice Paddy

2016

The Moderate Resolution Imaging Spectroradiometer (MODIS) land surface temperature (LST) and emissivity separation (MODTES) algorithm is the basis of the MOD21 product, which provides 1-km LSTs and emissivities for bands 29 (8.55 μm), 31 (11 μm), and 32 (12 μm). The MODTES algorithm uses the TES method with the water vapor scaling (WVS) method for refined atmospheric correction. The performance of the MODTES algorithm was tested with a set of MODIS data concurrent with ground LST and emissivity measurements. The test site is a large area of homogeneous full-cover rice crops (graybody), with high atmospheric water vapor. The data included LSTs measured along transects with multiple calibrate…

Radiometer010504 meteorology & atmospheric sciences0211 other engineering and technologiesAtmospheric correction02 engineering and technologyResidual01 natural sciencesStandard deviationEmissivityGeneral Earth and Planetary SciencesEnvironmental scienceModerate-resolution imaging spectroradiometerElectrical and Electronic EngineeringDispersion (water waves)Water vapor021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingIEEE Transactions on Geoscience and Remote Sensing
researchProduct

Atmospheric correction of optical imagery from MODIS and Reanalysis atmospheric products

2010

article i nfo In this paper we analyze the differences obtained in the atmospheric correction of optical imagery covering bands located in the Visible and Near Infra-Red (VNIR), Short-Wave Infra-Red (SWIR) and Themal-Infrared (TIR) spectral regions when atmospheric profiles extracted from different sources are used. In particular, three sensors were used, Compact High Resolution Imaging Spectrometer (CHRIS), Advanced Spaceborne Thermal Emission and Reflection radiometer (ASTER) and Landsat5 Thematic Mapper (TM), whereas four atmospheric profiles sources were considered: i) local soundings launched near the sensor overpass time, ii) Moderate Resolution Radiometer (MODIS) atmospheric profiles…

Radiometer010504 meteorology & atmospheric sciences0211 other engineering and technologiesAtmospheric correctionSoil ScienceGeology02 engineering and technology01 natural sciencesVNIRAdvanced Spaceborne Thermal Emission and Reflection RadiometerDepth soundingDew point13. Climate actionThematic MapperRadiative transferEnvironmental scienceComputers in Earth Sciences021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingRemote Sensing of Environment
researchProduct

In situ surface temperature retrieval in a boreal forest under variable cloudiness conditions

2005

Canopy temperature retrieval was one of the purposes during the Solar Induced FLuorescence EXperiment (SIFLEX‐2002) of the European Space Agency, carried out in a Finnish boreal forest. In this work, we describe the strategy used to determine this temperature from ground thermal infrared (TIR) data under skies with variable cloud cover. TIR radiance was measured by a CIMEL Electronique CE 312 radiometer. An analysis of the radiative transfer equation showed which terms were necessary to obtain accurate surface temperatures during the campaign. Atmospheric correction was considered negligible due to the small atmospheric path, but hemispheric downwelling sky radiance determination was needed…

RadiometerCloud coverCloud heightRadianceEmissivityRadiative transferAtmospheric correctionGeneral Earth and Planetary SciencesRadiometryEnvironmental scienceAtmospheric sciencesRemote sensingInternational Journal of Remote Sensing
researchProduct

Temperature and emissivity separation from ASTER data for low spectral contrast surfaces

2007

Abstract The performance of Advanced Spaceborne Thermal Emission Reflection Radiometer (ASTER) thermal infrared (TIR) data product algorithms was evaluated for low spectral contrast surfaces (such as vegetation and water) in a test site close to Valencia, Spain. Concurrent ground measurements of surface temperature, emissivity, and atmospheric radiosonde profiles were collected at the test site, which is a thermally homogeneous area of rice crops with nearly full vegetation cover in summer. Using the ground data and the local radiosonde profiles, at-sensor radiances were simulated for the ASTER TIR channels and compared with L1B data (calibrated at-sensor radiances) showing discrepancies up…

RadiometerPixelAtmospheric correctionSoil ScienceGeologySpectral linelaw.inventionData assimilationlawRadiosondeRadianceEmissivityEnvironmental scienceComputers in Earth SciencesRemote sensingRemote Sensing of Environment
researchProduct

Analysis of the atmospheric and emissivity influence on the splitwindow equation for sea surface temperature

1994

Abstract In this paper we have analysed the effects of the different atmospheric species (water vapour, fixed gases and aerosols) and the surface emissivity on the split-window method for determining the sea surface temperature. The widely used split-window method is based on the differential absorption of water vapour in the atmospheric window 10.5ndash;12.5 μm. Other atmospheric species with absorption coefficients different to that of water vapour can then have a large influence on the split-window. The effect of gases, such as C02, N20, CH4, CO and 03, and maritime aerosols is evaluated by comparing the effect of the water vapour alone. To do this we simulated AVHRR measurements in chan…

Sea surface temperatureMeteorologyInfrared windowAbsorptanceAtmospheric correctionEmissivityGeneral Earth and Planetary SciencesEnvironmental scienceAtmospheric sciencesAbsorption (electromagnetic radiation)Water vaporAerosolInternational Journal of Remote Sensing
researchProduct

Time Series Corrections and Analyses in Thermal Remote Sensing

2013

The time span of surface thermal data bases now reaches a few decades. However, studies using surface thermal time series are seldom, due to the difficulty of obtaining temporally coherent estimations for this parameter. Applications for surface thermal multitemporal analysis range from climate change studies and modeling to anomaly detection for natural or industrial hazard detection. This chapter presents methods to improve the temporal coherence of temperature time series, through data reconstruction of atmospheric and cloud contaminated observations, and through the correction of the orbital drift effect which hinders the use of the longest data sets. Then, methods for the analysis of t…

Series (mathematics)ThermalRange (statistics)Atmospheric correctionEnvironmental scienceAnomaly detectionCoherence (statistics)Bidirectional reflectance distribution functionImage resolutionRemote sensing
researchProduct

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)
researchProduct

Challenges in the atmospheric characterization for the retrieval of spectrally resolved fluorescence and PRI region dynamics from space

2021

Abstract In the coming years, Earth Observation missions like the FLuorescence EXplorer (FLEX) will acquire the radiance signal from the visible to the near-infrared at a very high spectral resolution, enabling exciting prospects for new insights in satellite-based photosynthetic studies. In this context, the process of de-coupling atmospheric and vegetation-related spectral signatures will become essential to guarantee a reliable estimation of the vegetation photosynthetic activity from space. Dynamic changes related to the vegetation photosynthetic status result in subtle contributions to the top of atmosphere radiance signal, e.g. due to the emission of the solar-induced chlorophyll fluo…

Spectral signature010504 meteorology & atmospheric sciencesAtmospheric pressure0208 environmental biotechnologyAtmospheric correctionSoil ScienceGeologyContext (language use)02 engineering and technology01 natural sciences020801 environmental engineeringAerosolRadiative transferRadianceEnvironmental scienceComputers in Earth SciencesWater vapor0105 earth and related environmental sciencesRemote sensingRemote Sensing of Environment
researchProduct