Search results for "Remote Sensing"

showing 10 items of 1262 documents

Soil Water Content Assessment: Critical Issues Concerning the Operational Application of the Triangle Method

2015

Knowledge of soil water content plays a key role in water management efforts to improve irrigation efficiency. Among the indirect estimation methods of soil water content via Earth Observation data is the triangle method, used to analyze optical and thermal features because these are primarily controlled by water content within the near-surface evaporation layer and root zone in bare and vegetated soils. Although the soil-vegetation-atmosphere transfer theory describes the ongoing processes, theoretical models reveal limits for operational use. When applying simplified empirical formulations, meteorological forcing could be replaced with alternative variables when the above-canopy temperatu…

Earth observationIrrigationAtomic and Molecular Physics and OpticComputer scienceEvaporationAirborne remote sensing; Soil moisture; Triangle method; Electrical and Electronic Engineering; Atomic and Molecular Physics and Optics; Analytical Chemistry; BiochemistrySoil sciencelcsh:Chemical technologyBiochemistryVineyardArticleAnalytical Chemistrytriangle methodStatisticsThermallcsh:TP1-1185Electrical and Electronic EngineeringInstrumentationWater contentSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaAerodynamicsAtomic and Molecular Physics and Opticsairborne remote sensingSoil watersoil moistureSettore ICAR/06 - Topografia E CartografiaSensors
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Gradient-Based Automatic Lookup Table Generator for Radiative Transfer Models

2022

Physically based radiative transfer models (RTMs) are widely used in Earth observation to understand the radiation processes occurring on the Earth’s surface and their interactions with water, vegetation, and atmosphere. Through continuous improvements, RTMs have increased in accuracy and representativity of complex scenes at expenses of an increase in complexity and computation time, making them impractical in various remote sensing applications. To overcome this limitation, the common practice is to precompute large lookup tables (LUTs) for their later interpolation. To further reduce the RTM computation burden and the error in LUT interpolation, we have developed a method to automaticall…

Earth observationMODTRANComputer scienceRemote sensing application0211 other engineering and technologiesAtmospheric correction02 engineering and technologyArticlesymbols.namesakeJacobian matrix and determinantLookup tablesymbolsRadiative transferGeneral Earth and Planetary SciencesElectrical and Electronic EngineeringAlgorithm021101 geological & geomatics engineeringInterpolationIEEE Transactions on Geoscience and Remote Sensing
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Atmospheric components determination from ground-level measurements during the spectra Barax Campaigns (SPARC) field campaigns

2007

The Surface Processes and Ecosystem Changes Through Response Analysis (SPECTRA) Barrax Campaigns were validation campaigns developed in the framework of the SPECTRA mission in order to verify that the geophysical data products provided by satellite imagery are consistent with the measurements made by independent means. Two campaigns took place in Barrax, Spain, during the summers of 2003 and 2004. This paper presents the results of the characterization of the atmospheric composition from solar radiation, radiosoundings, and lidar measurements. Several potentially interesting situations involving atmospheric layers with different types of aerosols and water content are discussed. The presenc…

Earth observationMeteorologyAtmospheric correction550 - Earth sciencesAtmospheric modelLidarAir mass (astronomy)Atmosphere of EarthRadiative transferGeneral Earth and Planetary SciencesEnvironmental scienceElectrical and Electronic EngineeringAtmospheric opticsRemote sensing
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Surface soil humidity retrieval by means of a semi-empirical coupled SAR model

2010

In the last years, the availability of new technologies of Earth Observation encouraged researches to use integrated approaches for environmental monitoring. Even for agro-hydrological applications, remotely sensed data are available on wide areas allowing the retrieval of cost-effective and representative estimation of high spatial and temporal variability of the soil-vegetation system variables. In particular, soil water content plays an important role determining the partition of precipitation between surface runoff and infiltration and, moreover, influences the distribution of the incoming radiation between latent and sensible heat flux. As a consequence, distributed soil water content …

Earth observationMeteorologyCloud coverSettore ICAR/02 - Costruzioni Idrauliche E Marittime E Idrologiamulti-polarized dataL bandSensible heatactive microwavecoupled modellaw.inventionInfiltration (hydrology)lawSoil waterSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliEnvironmental scienceSoil moistureRadarSurface runoffWater contentSoil moisture active microwave multi-polarized data L band coupled model.Settore ICAR/06 - Topografia E CartografiaRemote sensingRemote Sensing for Agriculture, Ecosystems, and Hydrology XII
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First results from the PROBA/CHRIS hyperspectral/multiangular satellite system over land and water targets

2005

The Project for On-Board Autonomy (PROBA) platform developed by the European Space Agency was launched on October 22, 2001. The instrument payload includes the Compact High Resolution Imaging Spectrometer (CHRIS). The coupled system provides high spatial resolution hyperspectral/multi-angular data, which represents a new-generation source of information for Earth observation purposes. The first results obtained from the preprocessing (noise removal and geometric/atmospheric correction) of two different datasets, collected over agricultural crops and inland waters, are presented in this letter. In situ measurements are used to assess the quality of the data and to validate the processing alg…

Earth observationMeteorologySpectrometerPayloadAtmospheric correctionHyperspectral imagingSatellite system550 - Earth sciencesGeotechnical Engineering and Engineering GeologyHigh spatial resolutionPreprocessorEnvironmental scienceElectrical and Electronic EngineeringRemote sensing
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On the demands on imaging spectrometry for the monitoring of global vegetation fluorescence from space

2013

Vegetation fluorescence when measured from space contributes only a tiny fraction of the signal coming on top of the reflected radiance by the Earth surface and the atmosphere. As a consequence, imaging spectrometers have to provide sufficient throughput and radiometric accuracy to enable accurate global monitoring of the daily to seasonal variations of the Earth's vegetation breath, which is particularly challenging if ground resolutions of a few hundred meters are targeted. Since fluorescence retrieval algorithms have to make corrections for atmospheric effects, it is necessary to provide sufficient spectral resolution, so that signal alterations due to the main parameters such as surface…

Earth observationOpticsSpectrometerbusiness.industryRadianceEnvironmental scienceSpectral resolutionAtmospheric temperatureAbsorption (electromagnetic radiation)Surface pressurebusinessWater vaporRemote sensingSPIE Proceedings
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CHRIS/PROBA toolbox for hyperspectral and multiangular data exploitations

2009

The project CHRIS/Proba Toolbox for BEAM (CHRIS-Box) has been developed in order to support users of data from the CHRIS sensor onboard of ESA's Proba platform. BEAM and the CHRIS-Box are user tools which ESA/ESRTN are providing free of charge to the Earth Observation Community. The CHRIS-Box software provides extensions for BEAM that allows accomplishing the following tasks: a) Noise reduction to remove the vertical striping and other noise present in CHRIS response-corrected images; b) Cloud screening to mark cloudy pixels in CHRIS noise-corrected images; the cloud screening algorithm provides cloud probability and abundances for each pixel; c) Atmospheric correction that provides surface…

Earth observationPixelbusiness.industryComputer scienceAtmospheric correctionComputingMilieux_PERSONALCOMPUTINGHyperspectral imagingReflectivityGeneralLiterature_MISCELLANEOUSPhysics::History of PhysicsComputer visionArtificial intelligenceNoise (video)businessGeographic coordinate systemRemote sensingInternational Geoscience and Remote Sensing Symposium (IGARSS)
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Towards a novel approach for Sentinel-3 synergistic OLCI/SLSTR cloud and cloud shadow detection based on stereo cloud-top height estimation

2021

Abstract Sentinel-3 is an Earth observation satellite constellation launched by the European Space Agency. Each satellite carries two optical multispectral instruments: the Ocean and Land Colour Instrument (OLCI) and the Sea and Land Surface Temperature Radiometer (SLSTR). OLCI and SLSTR sensors produce images covering the visible and infrared spectrum that can be collocated in order to generate synergistic products. In Earth observation, a particular weakness of optical sensors is their high sensitivity to clouds and their shadows. An incorrect cloud and cloud shadow detection leads to mistakes in both land and ocean retrievals of biophysical parameters. In order to exploit both OLCI and S…

Earth observationRadiometerComputer sciencebusiness.industryCloud topMultispectral imageCloud computingCollocation (remote sensing)Atomic and Molecular Physics and OpticsComputer Science ApplicationsNadirSatelliteComputers in Earth SciencesbusinessEngineering (miscellaneous)Remote sensingISPRS Journal of Photogrammetry and Remote Sensing
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Surface soil humidity retrieval using remote sensing techniques: a triangle method validation

2010

Soil humidity plays a key-role in hydrological and agricultural processes. In the rainfall-runoff processes the knowledge of its spatial distribution is fundamental to accurately model these phenomena. Furthermore in agronomy and agricultural sciences, assessing the water content of the root zone is required in order to optimize the plant productivity and to improve the irrigation systems management. Despite the importance of this variable the in situ measurements techniques based on Time Domain Reflectometry (TDR) or on the standard thermo-gravimetric methods, are neither cost-effective nor representative of its spatial and temporal variability. Indirect estimations via Earth Observation (…

Earth observationSettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaLongwavesoil moisture airborne remote sensing triangle methodHumiditySpatial distributiontriangle methodairborne remote sensingSoil waterSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliEnvironmental sciencesoil moistureImage resolutionShortwaveWater contentRemote sensingRemote Sensing for Agriculture, Ecosystems, and Hydrology XII
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Remote sensing of chlorophyll fluorescence for estimation of stress in vegetation. Recommendations for future missions

2007

Vegetation monitoring is a key issue in Earth Observation due to its relation with the global CO2 cycle. Chlorophyll fluorescence (ChF) emitted by the vegetation is an accurate indicator of the plant status and their photosynthetic activity. This work analyses the diurnal evolution of the ChF emission spectrum and the fluorescence yield in order to determine the best conditions for remote sensing of ChF from a satellite platform. The ChF evolution is studied at leaf level during several diurnal cycles, in simulated conditions, for two species under different stress conditions. The analysis of the signal levels gives an estimation of the values of ChF emission which could be observed from a …

Earth observationSpectroradiometerDiurnal cycleEnvironmental scienceRadiometrySatellite550 - Earth sciencesEmission spectrumVegetationChlorophyll fluorescenceRemote sensingIGARSS: 2007 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM, VOLS 1-12
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