Search results for "Remote Sensing"

showing 10 items of 1262 documents

Retrieving leaf area index from multi-angular airborne data

2009

This work is aimed to demonstrate the feasibility of a methodology for retrieving bio-geophysical variables whilst at the same time fully accounting for additional information on directional anisotropy. A model-based approach has been developed to deconvolve the angular reflectance into single landcovers reflectances, attempting to solve the inconsistencies of 1D models and linear mixture approaches. The model combines the geometric optics of large scale canopy structure with principles of radiative transfer for volume scattering within individual crowns. The reliability of the model approach to retrieve LAI has been demonstrated using data from DAISEX- 99 campaign at Barrax, Spain. Airborn…

MeteorologyGeometrical opticslcsh:QC801-809Inversion (meteorology)lcsh:QC851-999LAImulti-angularinversionlcsh:Geophysics. Cosmic physicsGeophysicsRadiative transferEnvironmental sciencelcsh:Meteorology. ClimatologyDeconvolutionPOLDERLeaf area indexVolume scatteringHyMapHyMapDirectional anisotropyRemote sensing
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A method for the atmospheric correction of ENVISAT/MERIS data over land targets

2007

An atmospheric correction algorithm for the retrieval of land surface reflectance from imagery acquired by the Medium Resolution Imaging Spectrometer (MERIS) on-board the European Space Agency (ESA) ENVIronmental SATellite (ENVISAT) platform has been implemented. The algorithm is designed to estimate the main atmospheric parameters needed in the correction, aerosol and water vapour contents, from the image itself, leading to an optimal characterization of the atmospheric state at the time of image acquisition. Once the atmospheric state has been defined, a second step deals with the retrieval of surface reflectance, accounting for the contribution of surface elevation and roughness as well …

MeteorologyImaging spectrometerElevationAtmospheric correctionGeneral Earth and Planetary SciencesEnvironmental science550 - Earth sciencesSatelliteMineral dustWater vaporRemote sensingAERONETAerosol
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Land surface temperature retrieval from MSG1-SEVIRI data

2004

Abstract We have developed a physical-based split-window Land Surface Temperature (LST) algorithm for retrieving the surface temperature from SEVIRI/MSG1 (Spinning Enhanced Visible and Infrared Imager/Meteosat Second Generation1) data in two thermal infrared bands (IR 10.8 and IR 12.0). The proposed algorithm takes into account the SEVIRI angular dependence. The numerical values of the split-window coefficients have been obtained from a statistical regression method, using synthetic data. The look-up tables for atmospheric transmission, path radiance, and downward thermal irradiance are calculated with the MODTRAN3 code. The new LST algorithm has been tested with simulated SEVIRI/MSG1 data …

MeteorologyInfraredIrradianceSoil ScienceGeologySynthetic dataStandard deviationThermalRange (statistics)RadianceEnvironmental scienceComputers in Earth SciencesZenithRemote sensingRemote Sensing of Environment
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Proposal and Validation of an Emissivity-Dependent Algorithm to Retrieve Sea-Surface Temperature From MSG-SEVIRI Data

2010

A frequent and accurate determination of sea-surface temperature (SST) would permit an improvement in both the forecasting of natural hazards and the monitoring of the effects of climate change. The Meteosat Second Generation (MSG) spinning enhanced visible and infrared imager (SEVIRI) (MSG-SEVIRI) offers this possibility, since it has a temporal resolution of 15 min. Current algorithms for SST retrieval from MSG-SEVIRI data use angular-dependent coefficients, but they do not use sea-surface emissivity (SSE) as an explicit input. This letter proposes a both angular- and emissivity-dependent split-window equation, together with simple equations to estimate SSE and atmospheric water-vapor con…

MeteorologyInfraredWeather forecastingAtmospheric modelGeotechnical Engineering and Engineering Geologycomputer.software_genreSea surface temperatureTemporal resolutionEmissivityEnvironmental scienceAlgorithm designElectrical and Electronic EngineeringSpinningcomputerAlgorithmPhysics::Atmospheric and Oceanic PhysicsRemote sensingIEEE Geoscience and Remote Sensing Letters
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Hyperspectral solar spectral measurements and applications

2007

Measurements of hyperspectral solar irradiance from aircraft and satellite are applied to a variety of cloud and aerosol remote sensing, and radiative energy budget applications.

MeteorologyIrradianceDiffuse sky radiationRadiant energyHyperspectral imagingSolar irradiancePhysics::Space PhysicsRadiative transferEnvironmental scienceSatelliteAstrophysics::Earth and Planetary AstrophysicsPhysics::Atmospheric and Oceanic PhysicsOptical depthRemote sensing
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NOAA-AVHRR Orbital Drift Correction From Solar Zenithal Angle Data

2008

This paper presents a new method for NOAA's (National Ocean and Atmospheric Administration) orbital drift correction. This method is pixel-based, and in opposition with most methods previously developed, does not need explicit knowledge of land cover. This method is applied to AVHRR (Advanced Very High Resolution Radiometer) channel information, and relies only on the additional knowledge of solar zenithal angle (SZA) and acquisition date information. In a first step, anomalies in SZA and channel time series are retrieved, and screened out for anomalous values. Then, the part of the parameter anomaly which is explained by SZA anomaly is removed from the data, to estimate new parameter anoma…

MeteorologyLand surface temperaturePixelAdvanced very-high-resolution radiometerGeneral Earth and Planetary SciencesEnvironmental scienceRadiometryLand coverElectrical and Electronic EngineeringTime seriesNormalized Difference Vegetation IndexRemote sensingCommunication channelIEEE Transactions on Geoscience and Remote Sensing
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The Satellite Application Facility for Land Surface Analysis

2011

Information on land surface properties finds applications in a range of areas related to weather forecasting, environmental research, hazard management and climate monitoring. Remotely sensed observations yield the only means of supplying land surface information with adequate time sampling and a wide spatial coverage. The aim of the Satellite Application Facility for Land Surface Analysis (Land-SAF) is to take full advantage of remotely sensed data to support land, land-atmosphere and biosphere applications, with emphasis on the development and implementation of algorithms that allow operational use of data from European Organization for the Exploitation of Meteorological Satellites (EUMET…

MeteorologyLongwaveWeather forecastingBiosphereVegetationAlbedocomputer.software_genreEvapotranspirationGeneral Earth and Planetary SciencesEnvironmental scienceSatelliteSurface watercomputerRemote sensingInternational Journal of Remote Sensing
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Error sources on the land surface temperature retrieved from thermal infrared single channel remote sensing data

2006

In this paper, a theoretical study complementary to others given in the literature about the errors committed on the land surface temperature retrieved from the radiative transfer equation in the thermal infrared region by remote sensing techniques has been analysed. For this purpose, the MODTRAN 3.5 code has been used in order to simulate different conditions and evaluate the influence of several parameters on the land surface temperature accuracy: atmospheric correction, noise of the sensor, land surface emissivity, aerosols and other gaseous absorbers, angular effects, wavelength uncertainty, full‐width half‐maximum of the sensor and band‐pass effects. The results show that the most impo…

MeteorologyMODTRANAtmospheric correctionNoise (electronics)WavelengthBruitmedicineRadiative transferEmissivityGeneral Earth and Planetary SciencesEnvironmental scienceRadiometrymedicine.symptomRemote sensingInternational Journal of Remote Sensing
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Performance of a FieldSpec spectroradiometer for aerosol optical depth retrieval: method and preliminary results

2009

The performance of a FieldSpec spectroradiometer for retrieving aerosol optical depth (AOD) has been assessed after modifying its basic configuration in order to measure direct solar irradiance at ground level. The FieldSpec measurements were obtained during four summertime days in the years 2004 and 2005, over a Spanish agricultural site in Barrax, Albacete (30 degrees 3(') N, 2 degrees 6(') W, 700 m a.s.l.), in the framework of two European Space Agency mission remote sensing field campaigns. From the whole FieldSpec spectral domain (350-2500 nm) the AOD was extracted for channels within atmospheric windows. The instrument was calibrated by means of the standard Langley plot method, perfo…

MeteorologyMaterials Science (miscellaneous)Solar irradianceIndustrial and Manufacturing EngineeringSun photometerSpectroradiometerInfrared windowRadiometryEnvironmental scienceBusiness and International ManagementRadiometric calibrationAtmospheric opticsOptical depthRemote sensingApplied Optics
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About the Problem of Scaling from Ground Measurements to Low Resolution Satellite Data

2005

Only satellite data can really produce "global" datasets, and the role of satellite data in the study of global processes is really essential, but ground measurements are also needed to calibrate satellite data and to validate models routinely working with satellite data inputs. The problem of comparing ground measurements with the measurements made by a satellite, particularly in the case of low resolution data (as NOAA AVHRR) imply the consideration of the problem of scaling, both in the case of particular measurements and in the case of mathematical models relating such measurements. Within the context of the EFEDA field experiment, the problem of scaling from ground measurements to low …

MeteorologyMathematical modelSpatial ecologyEnvironmental scienceRadiometryContext (language use)SatelliteImage resolutionScalingNormalized Difference Vegetation IndexRemote sensing[Proceedings] IGARSS '92 International Geoscience and Remote Sensing Symposium
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