0000000000666468

AUTHOR

Xavier Briottet

showing 9 related works from this author

The Indian-French Trishna Mission: Earth Observation in the Thermal Infrared with High Spatio-Temporal Resolution

2018

International audience; The monitoring of the water cycle at the Earth surface which tightly interacts with the climate change processes as well as a number of practical applications (agriculture, soil and water quality assessment, irrigation and water resource management, etc...) requires surface temperature measurements at local scale. Such is the goal of the Indian-French high spatio-temporal TRISHNA mission (Thermal infraRed Imaging Satellite for High-resolution Natural resource Assessment). The scientific objectives of the mission and research work conducted to consolidate the mission specifications are presented. Progress in modelling of surface fluxes is then discussed. The main spec…

Earth observation010504 meteorology & atmospheric sciencesINFRAROUGECLIMATE CHANGEWATER MANAGEMENT0211 other engineering and technologiesClimate change02 engineering and technology01 natural sciences[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyWATER STRESSWater cycleThermal infraredBaseline (configuration management)SATELLITE021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingTHERMAL[SDE.IE]Environmental Sciences/Environmental EngineeringINFRAREDSpectral bandsMISSION SPATIALENatural resource13. Climate actionTemporal resolution[SDE]Environmental SciencesEnvironmental scienceSatellite
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Analysis of the performance of the TES algorithm over urban areas

2014

International audience; The temperature and emissivity separation (TES) algorithm is used to retrieve the land surface emissivity (LSE) and land surface temperature (LST) values from multispectral thermal infrared sensors. In this paper, we analyze the performance of this methodology over urban areas, which are characterized by a large number of different surface materials, a variability in the lowest layer of the atmospheric profiles, and a 3-D structure. These specificities induce errors in the LSE and LST retrieval, which should be quantified. With this aim, the efficiency of the TES algorithm over urban materials, the atmospheric correction, and the impact of the 3-D architecture of urb…

land surface temperature (LST)010504 meteorology & atmospheric sciencesMeteorologyMean squared errorMultispectral image0211 other engineering and technologies02 engineering and technologyAtmospheric model01 natural sciencestemperature and emissivity separation (TES)AtmosphereError budget[INFO.INFO-TS]Computer Science [cs]/Signal and Image Processing11. SustainabilityEmissivityRadiative transferurban.Electrical and Electronic Engineering021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingAtmospheric correctionRadianceGeneral Earth and Planetary SciencesEnvironmental scienceAlgorithmurban[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingland surface emissivity (LSE)
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La Qualité de l’air en ville à Très haute Résolution (Quali_ThR): Apport des images Pléiades dans la démarche SCAUP ?

2017

International audience

[SHS.GEO] Humanities and Social Sciences/Geography[SHS.GEO]Humanities and Social Sciences/GeographyComputingMilieux_MISCELLANEOUS[ SHS.GEO ] Humanities and Social Sciences/Geography
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Indo-French High-resolution Thermal Infrared Space Mission for Earth Natural Resources Assessment and Monitoring -Concept and Definition of TRISHNA

2019

The Indian and French Space Agencies, ISRO and CNES, have conceptualized a space-borne Thermal Infrared Reflectance (TIR) mission, TRISHNA (Thermal infRared Imaging Satellite for High-resolution Natural Resource Assessment). The primary design drivers of TRISHNA are the monitoring of (i) terrestrial water stress and use, and of (ii) coastal and continental water. A suit of four TIR bands and six optical bands is planned. The TIR bands will be centred at 8.6 μm, 9.1 μm, 10.3 μm and 11.5 μm to provide noon-night global observations at 57m nadir resolution over land and coastal regions. The field of view (FOV) is ±34° and the orbit of 761&thin…

lcsh:Applied optics. Photonics010504 meteorology & atmospheric sciences0207 environmental engineering[SDU.STU]Sciences of the Universe [physics]/Earth Sciences02 engineering and technology01 natural scienceslcsh:Technologyglobal monitoringEvapotranspirationNadir020701 environmental engineering0105 earth and related environmental sciencesRemote sensingTIR remote sensing;surface energy balance;TRISHNA mission;global monitoringSpacecraftbusiness.industrylcsh:Tsurface energy balancePrimary productionlcsh:TA1501-1820Natural resourceTRISHNA mission13. Climate actionlcsh:TA1-2040TIR remote sensingEnvironmental scienceRadiometrySatellitebusinesslcsh:Engineering (General). Civil engineering (General)Water use
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Performance of TES method over urban areas at a high spatial resolution scale

2013

The Temperature and Emissivity Separation (TES) algorithm is used to retrieve the LSE and LST values from hyperspectral sensors. In this work we analyse the performance of this methodology over urban areas. Three different sources of error in the processing chain of the remote sensing imagery are detected: the algorithm itself, the atmospheric correction and the 3D structure of the urban scenes. The TITAN tool is used to model all the radiative components of the signal registered by a sensor. Results show that: first, the TES algorithm used reproduces the LSE (LST) of urban materials within an RMSE of 0.017 (0.9 K). Second, 20 % of uncertainty in the water vapour content of the total atmosp…

Mean squared errorMeteorologyEmissivityRadiative transferAtmospheric correctionEnvironmental scienceHyperspectral imagingAtmospheric modelScale (map)Image resolutionRemote sensing2013 5th Workshop on Hyperspectral Image and Signal Processing: Evolution in Remote Sensing (WHISPERS)
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The Mistigri Thermal Infrared Project: Scientific Objectives And Mission Specifications

2013

ISI Document Delivery No.: 147NI Times Cited: 4 Cited Reference Count: 117 Cited References: Abrams M, 2000, INT J REMOTE SENS, V21, P847, DOI 10.1080/014311600210326 Agam N, 2007, J GEOPHYS RES-ATMOS, V112, DOI 10.1029/2007JD008407 Allen RG, 2007, J IRRIG DRAIN E-ASCE, V133, P380, DOI 10.1061/(ASCE)0733-9437(2007)133:4(380) Alletto L, 2006, CHEMOSPHERE, V64, P1053, DOI 10.1016/j.chemosphere.2005.12.004 Arnfield AJ, 2003, INT J CLIMATOL, V23, P1, DOI 10.1002/joc.859 Baschek B., 2010, 2010 OC SCI M PORTL Bastiaanssen WGM, 1998, J HYDROL, V212, P198, DOI 10.1016/S0022-1694(98)00253-4 Bastiaanssen WGM, 2005, J IRRIG DRAIN E-ASCE, V131, P85, DOI 10.1061/(ASCE)0733-9437(2005)131:1(85) Beck LR, 2…

[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesEngineeringDATA010504 meteorology & atmospheric sciencesLand surface temperature[SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph]media_common.quotation_subject[SDE.MCG]Environmental Sciences/Global Changes0211 other engineering and technologies[SDV.SA.AGRO]Life Sciences [q-bio]/Agricultural sciences/AgronomyClimate change02 engineering and technologyURBAN01 natural sciencesLAND-SURFACE TEMPERATUREOriginalityAgency (sociology)CALIFORNIA CURRENT SYSTEMUrban heat islandArchitecture[SDU.STU.HY]Sciences of the Universe [physics]/Earth Sciences/Hydrology[SDU.ENVI]Sciences of the Universe [physics]/Continental interfaces environment021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingmedia_common[SDV.EE]Life Sciences [q-bio]/Ecology environmentThermal infraredbusiness.industry[SDE.IE]Environmental Sciences/Environmental EngineeringSPECTRAL INDEXESREMOTE-SENSINGREFLECTION RADIOMETER ASTEREMISSIVITY SEPARATION ALGORITHM[SPI.ELEC]Engineering Sciences [physics]/ElectromagnetismAGRICULTURAL AREASystems engineering[SPI.OPTI]Engineering Sciences [physics]/Optics / PhotonicGeneral Earth and Planetary SciencesENERGY-BALANCE[SDV.EE.BIO]Life Sciences [q-bio]/Ecology environment/Bioclimatologybusiness[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingSATELLITE IMAGESHEAT-ISLAND
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Optical Remote Sensing in Urban Environments

2016

International audience; Cities today face a variety of issues: attractiveness and economic development, living conditions and urban redevelopment, the quality of life of citizens and the environmental conditions of the urban system as a whole. These challenges reflect the situations in urban territories where the economic development and population growth required for stabilizing the urban system come into conflict with the promotion of esthetic urban improvements appropriate for social cohesion and ensuring the safety of users while guaranteeing a reduction of the environmental impact caused by urban spread [WGI 14, WEB 15, MAC 07, WIL 11]. The process of urbanization, which has significan…

Attractiveness010504 meteorology & atmospheric sciencesOPTICAL REMOTE SENSING0211 other engineering and technologiesUrban regeneration02 engineering and technologyURBANISMECHARACTERISTICS01 natural sciencesREMOTE SENSING[SPI]Engineering Sciences [physics]VHR11. SustainabilityURBAN SYSTEMOPTICAL PROPERTIESMAPPING AND PLANNINGUrban heat islandEnvironmental planning021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensing[PHYS]Physics [physics]ENVIRONMENTBIODIVERSITE15. Life on landURBAN HEAT ISLANDSVariety (cybernetics)Geography13. Climate actionRemote sensing (archaeology)Urban systemVEGETATION
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Night Thermal Unmixing for the Study of Microscale Surface Urban Heat Islands with TRISHNA-Like Data

2019

International audience; Urban Heat Islands (UHIs) at the surface and canopy levels are major issues in urban planification and development. For this reason, the comprehension and quantification of the influence that the different land-uses/land-covers have on UHIs is of particular importance. In order to perform a detailed thermal characterisation of the city, measures covering the whole scenario (city and surroundings) and with a recurrent revisit are needed. In addition, a resolution of tens of meters is needed to characterise the urban heterogeneities. Spaceborne remote sensing meets the first and the second requirements but the Land Surface Temperature (LST) resolutions remain too rough…

ScienceSURFACE URBAN HEAT ISLANDDÉMÉLANGESUHIQTRISHNA MISSIONLAND SURFACE TEMPERATURENIGHT THERMAL UNMIXINGURBAN AREANUIT[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingMILIEU URBAIN
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Multi-resolution study of thermal unmixing techniques over Madrid Urban Area: case study of TRISHNA mission

2019

This work is linked to the future Indian&ndash

TRISHNA missionthermal unmixingland surface temperaturelcsh:Qlcsh:Scienceurban environment
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