Search results for "REMOTE"

showing 10 items of 1455 documents

AATSR land surface temperature product algorithm verification over a WATERMED site

2007

Abstract A new operational Land Surface Temperature (LST) product generated from data acquired by the Advanced Along-Track Scanning Radiometer (AATSR) provides the opportunity to measure LST on a global scale with a spatial resolution of 1 km 2 . The target accuracy of the product, which utilises nadir data from the AATSR thermal channels at 11 and 12 μm, is 2.5 K for daytime retrievals and 1.0 K at night. We present the results of an experiment where the performance of the algorithm has been assessed for one daytime and one night time overpass occurring over the WATERMED field site near Marrakech, Morocco, on 05 March 2003. Top of atmosphere (TOA) brightness temperatures (BTs) are simulate…

Atmospheric ScienceDaytimeRadiometerPixelMeteorologyAerospace EngineeringAstronomy and AstrophysicsAATSRStandard deviationGeophysicsAtmospheric radiative transfer codesSpace and Planetary ScienceNadirEmissivityGeneral Earth and Planetary SciencesEnvironmental scienceAlgorithmRemote sensingAdvances in Space Research
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In search of traceability: two decades of calibrated Brewer UV measurements in Sodankylä and Jokioinen

2016

Abstract. The two Brewer spectrophotometers of the Finnish Meteorological Institute at Jokioinen and Sodankylä have been operated according to the highest levels of the WMO∕GAW (World Meteorological Organization∕Global Atmosphere Watch) recommendations with rigorous quality control and quality assurance. The calibration of the instruments is based on annual recalibrations of primary standard lamps in the VTT MIKES Metrology National Standards Laboratory in Finland and an exhaustive measurement program with measurements of standard and working lamps in the on-site optical laboratories. Over the years, the maintenance of the calibration has produced data sets of approximately 2000 lamp scans …

Atmospheric ScienceEUROPETraceabilityMeteorology010504 meteorology & atmospheric sciencesQUALITY-ASSURANCE0208 environmental biotechnologySPECTRAL IRRADIANCE MEASUREMENTS02 engineering and technologyTotal ozoneOceanography114 Physical sciences01 natural sciencesTOTAL OZONE0103 physical sciencesCalibration010303 astronomy & astrophysicsRemote sensing0105 earth and related environmental sciencesbusiness.industryGROUND-BASED MEASUREMENTSOMIlcsh:QC801-809Geology020801 environmental engineeringMetrologylcsh:Geophysics. Cosmic physicsGeographySpectroradiometerSPECTRORADIOMETER13. Climate actionPrimary standardbusinessQuality assuranceGeoscientific Instrumentation, Methods and Data Systems
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Correction to “A generalized single-channel method for retrieving land surface temperature from remote sensing data” by Juan C. Jiménez-Muñoz and Jos…

2004

Atmospheric ScienceEcologyLand surface temperatureMeteorologyPaleontologySoil ScienceForestryAquatic ScienceOceanographyGeophysicsSpace and Planetary ScienceGeochemistry and PetrologyRemote sensing (archaeology)Earth and Planetary Sciences (miscellaneous)Environmental scienceEarth-Surface ProcessesWater Science and TechnologyRemote sensingCommunication channelJournal of Geophysical Research
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Land surface temperature retrieval from thermal infrared data: An assessment in the context of the Surface Processes and Ecosystem Changes Through Re…

2005

[1] SPECTRA (Surface Processes and Ecosystem Changes Through Response Analysis) is one of the core candidate missions which is being proposed for implementation in the European Space Agency (ESA) Earth Explorer program of research oriented missions. The scientific objective of the SPECTRA mission is to describe, understand, and model the role of terrestrial vegetation in the global carbon cycle and its response to climate variability under the increasing pressure of human activity. The SPECTRA satellite will embark an optical hyperspectral payload covering the solar spectral range (0.4 to 2.4 μm) and thermal infrared region (10.3 to 12.3 μm). This paper is focused on the land surface temper…

Atmospheric ScienceEcologyMeteorologyPayloadResponse analysisPaleontologySoil ScienceHyperspectral imagingForestryContext (language use)Aquatic ScienceOceanographyNoise (electronics)GeophysicsSpace and Planetary ScienceGeochemistry and PetrologyThermalEarth and Planetary Sciences (miscellaneous)Environmental scienceSatelliteWater vaporEarth-Surface ProcessesWater Science and TechnologyRemote sensingJournal of Geophysical Research
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Foreword to the Special Issue on IGARSS 2018

2019

The papers in this special issue were presented at the 2018 International Geoscience and Remote Sensing Symposium (IGARSS-2018) was held on July 22–27, 2018 in Valencia, Spain.

Atmospheric ScienceEngineeringRemote sensing (archaeology)business.industryComputers in Earth SciencesbusinessRemote sensingIEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
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A New Method for Determining the Ångström Turbidity Coefficient from Broadband Filter Measurements

2000

Abstract In this work, a new method for determining Angstrom turbidity coefficients is presented. This method is based on broadband filter irradiance measurements. By combining measurements obtained with different filters it is possible to obtain a single value of the turbidity coefficient representative of the whole measurement range of the pyrheliometer. The results provided by this new method are compared with the original Angstrom method and turbidity coefficient values derived by spectroradiometric measurements. The results reproduce the actual values, as measured by a spectroradiometer, better than the previous best correlation did, thus demonstrating the advantage of analyzing the op…

Atmospheric ScienceFilter (large eddy simulation)SpectroradiometerMaterials scienceBroadbandIrradianceRange (statistics)Physics::OpticsMineralogyAngstromTurbidityPyrheliometerRemote sensingJournal of Applied Meteorology
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Thermal inertia mapping from NOAA-AVHRR data

1998

Abstract This paper presents a method to retrieve thermal inertia from NOAA-AVHRR data. The method, based on Xue and Cracknell's model (1992), involves using the phase angle information of the diurnal surface temperature change. The method needs three different NOAA overpasses of the same area throughout a single diurnal cycle. To apply this method we present a methodology that takes into account satellite calibrations, viewing geometry and correction of atmospheric effects. The advantage is that it does not need other data than the ones supplied by the satellite. Finally, we present the preliminary results obtained using the proposed method and the methodology for AVHRR data over the Iberi…

Atmospheric ScienceGeophysicsMeteorologyThermal inertiaPhase angle (astronomy)Space and Planetary ScienceDiurnal cycleAerospace EngineeringGeneral Earth and Planetary SciencesAstronomy and AstrophysicsSatelliteGeologyRemote sensingAdvances in Space Research
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Obtaining the three-dimensional structure of tree orchards from remote 2D terrestrial LIDAR scanning

2009

In recent years, LIDAR (light detection and ranging) sensors have been widely used to measure environmental parameters such as the structural characteristics of trees, crops and forests. Knowledge of the structural characteristics of plants has a high scientific value due to their influence in many biophysical processes including, photosynthesis, growth, CO2-sequestration and evapotranspiration, playing a key role in the exchange of matter and energy between plants and the atmosphere, and affecting terrestrial, above-ground, carbon storage. In this work, we report the use of a 2D LIDAR scanner in agriculture to obtain three-dimensional (3D) structural characteristics of plants. LIDAR allows…

Atmospheric ScienceGlobal and Planetary ChangeCorrelation coefficientForestryVegetationOptical radarRadar òpticTree volumeFotogrametria aèriaArbresTerrestrial LIDARTree (data structure)Lidar:Enginyeria agroalimentària::Ciències forestals [Àrees temàtiques de la UPC]Evapotranspiration3D Plant structureEnvironmental scienceOrchardLeaf area indexAgronomy and Crop ScienceLaser measurementsRemote sensingWoody plant
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Detection of Water Stress in an Olive Orchard with Thermal Remote Sensing Imagery

2006

An investigation of the detection of water stress in non-homogeneous crop canopies such as orchards using high-spatial resolution remote sensing thermal imagery is presented. An airborne campaign was conducted with the Airborne Hyperspectral Scanner (AHS) acquiring imagery in 38 spectral bands in the 0.43–12.5 mm spectral range at 2.5 m spatial resolution. The AHS sensor was flown at 7:30, 9:30 and 12:30 GMT in 25 July 2004 over an olive orchard with three different water-deficit irrigation treatments to study the spatial and diurnal variability of temperature as a function of water stress. A total of 10 AHS bands located within the thermal-infrared region were assessed for the retrieval of…

Atmospheric ScienceGlobal and Planetary ChangeGround truthCrown temperatureWater stressDeficit irrigationAtmospheric correctionHyperspectral imagingForestrySpectral bandsEmissivityEnvironmental scienceOrchardDeficit irrigationAgronomy and Crop ScienceImage resolutionThermal remote sensingRemote sensingSplit-window
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Peer review report 3 on “Spatio-temporal variability of erosivity determined by highly resolved and adjusted radar rain data (RADOLAN)”

2016

Atmospheric ScienceGlobal and Planetary ChangeMeteorologylawEnvironmental scienceForestryRadarAgronomy and Crop ScienceRemote sensinglaw.inventionAgricultural and Forest Meteorology
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