2024-03-29T06:12:53Zhttp://nsidc.org/api/dataset/metadata/oaioai:nsidc.org/SV15PLTB.0012023-11-29T22:20:27Znasa_nsidc_daacecs
SV15PLTB.001SMAPVEX15 PALS Brightness Temperature DataColliander, A. and S. Misra.SMAPVEX15 PALS Brightness Temperature Data2017-09-06Boulder, Colorado USANASA NSIDC DAAC: NASA National Snow and Ice Data Center Distributed Active Archive Center1false10.5067/50DIUMRHN5E1https://doi.org/10.5067/50DIUMRHN5E1SV15PLTBTechnical ContactNSIDCUser Servicesnsidc@nsidc.org1-303-492-61991-303-492-2468CIRES, 449 UCBUniversity of ColoradoBoulderCO80309-0449USAInvestigatorAndreasCollianderandreas.colliander@jpl.nasa.govPasadenaCA91109USAInvestigatorSidharthMisraEARTH SCIENCESPECTRAL/ENGINEERINGMICROWAVEBRIGHTNESS TEMPERATURE EARTH SCIENCELAND SURFACESURFACE THERMAL PROPERTIESLAND SURFACE TEMPERATURE Climatology/Meteorology/AtmosphereAircraftBrightness TemperatureLand Surface Temperaturesmap-validationSMAP Validation SV15-projectSMAPVEX15Soil MoistureSoil Moisture Active PassivePALSPassive Active L-band SystemAIRCRAFT2015-08-022015-08-18complete31.5131.87-110.96-109.842300 meters2300 metersContinentNorth AmericaUnited States Of AmericaArizonaSan Pedro River Basin1200 m1200 m2 days to 3 daysSMAPSoil Moisture Active PassiveSMAPVEX15Soil Moisture Active Passive Validation Experiment 2015The quality of the brightness temperature data relies on internal calibration utilizing matched loads, and external targets verifying the repeatability of the measurements. These references assure generally good quality of the data.These data are freely, openly, and fully accessible, provided that you are logged into your NASA Earthdata profile (https://urs.earthdata.nasa.gov/).These data are freely, openly, and fully available to use without restrictions, provided that you cite the data according to the recommended citation at https://nsidc.org/about/use_copyright.html. For more information on the NASA EOSDIS Data Use Policy, see https://earthdata.nasa.gov/earth-observation-data/data-use-policy.EnglishNASA/JPL/SMAPNASA NSIDC DAACNASA National Snow and Ice Data Center Distributed Active Archive Centerhttps://nsidc.org/daacData Center ContactNSIDCUser Servicesnsidc@nsidc.org1-303-492-6199National Snow and Ice Data CenterCIRES, 449 UCBUniversity of ColoradoBoulderCO80309-0449USAHTTPS9.1 MBASCIIBolten, J., V. Lakshmi, and E. Njoku. 2003. Soil Moisture Retrieval using the Passive/Active L- and S-Band Radar/Radiometer. IEEE Trans. Geosci. Rem. Sens., 41:2792-2801.
Colliander, A., S. Chan, S. Kim, N. Das, S. Yueh, M. Cosh, R. Bindlish, T. Jackson, and E. Njoku. 2012. Long Term Analysis of PALS Soil Moisture Campaign Measurements for Global Soil Moisture Algorithm Development. Rem. Sens. of Environ. 121:309-322.
Colliander, A., M. H. Cosh, S. Misra, T. J. Jackson, et al. 2017. Validation and Scaling of Soil Moisture in a Semi-Arid Environment: SMAP Validation Experiment 2015 (SMAPVEX15). Remote Sens. Environ., 196:101-112.
McNairn, H., T. Jackson, G. Wiseman, S. Belair, A. Berg, P. Bullock, A. Colliander, M. Cosh, S. Kim, R. Magagi, et al. 2015. The Soil Moisture Active Passive Validation Experiment 2012 (SMAPVEX12): Pre-Launch Calibration and Validation of the SMAP Satellite. IEEE Trans. Geosci. Rem. Sens., 53(5).
Narayan, U., V. Lakshmi, and E. Njoku. 2004. Retrieval of Soil Moisture from Passive and Active L/S Band Sensor (PALS) Observations during the Soil Moisture Experiment in 2002 (SMEX02). Rem. Sens. Environ., 92:483-496.
Njoku, E., W. Wilson, S. Yueh, S. Dinardo, F. Li, T. Jackson, V. Lakshmi, and J. Bolten. 2002. Observations of Soil Moisture using a Passive and Active Low Frequency Microwave Airborne Sensor during SGP99. IEEE Trans. Geosci. Rem. Sens., 40:2659-2673.
Wilson, W.J., S.H. Yueh, S.J. Dinardo, S. Chazanoff, F.K. Li, and Y. Rahmat-Samii. 2001. Passive Active L- and S-band (PALS) Microwave Sensor for Ocean Salinity and Soil Moisture Measurements, IEEE Trans. Geosci. Rem. Sens. 39, 1039-1048.
Yueh, S., S. Dinardo, S. Chan, E. Njoku, T. Jackson, and R. Bindlish. 2008. Passive and Active L-Band System and Observations during the 2007 CLASIC Campaign. Proc. IEEE IGARSS08, (2) II-241 - II-244, July 7-11, 2008.
Bolten, J., V. Lakshmi, and E. Njoku. 2003. Soil Moisture Retrieval using the Passive/Active L- and S-Band Radar/Radiometer. IEEE Trans. Geosci. Rem. Sens., 41:2792-2801.
Colliander, A., S. Chan, S. Kim, N. Das, S. Yueh, M. Cosh, R. Bindlish, T. Jackson, and E. Njoku. 2012. Long Term Analysis of PALS Soil Moisture Campaign Measurements for Global Soil Moisture Algorithm Development. Rem. Sens. of Environ. 121:309-322.
Colliander, A., M. H. Cosh, S. Misra, T. J. Jackson, et al. 2017. Validation and Scaling of Soil Moisture in a Semi-Arid Environment: SMAP Validation Experiment 2015 (SMAPVEX15). Remote Sens. Environ., 196:101-112.
McNairn, H., T. Jackson, G. Wiseman, S. Belair, A. Berg, P. Bullock, A. Colliander, M. Cosh, S. Kim, R. Magagi, et al. 2015. The Soil Moisture Active Passive Validation Experiment 2012 (SMAPVEX12): Pre-Launch Calibration and Validation of the SMAP Satellite. IEEE Trans. Geosci. Rem. Sens., 53(5).
Narayan, U., V. Lakshmi, and E. Njoku. 2004. Retrieval of Soil Moisture from Passive and Active L/S Band Sensor (PALS) Observations during the Soil Moisture Experiment in 2002 (SMEX02). Rem. Sens. Environ., 92:483-496.
Njoku, E., W. Wilson, S. Yueh, S. Dinardo, F. Li, T. Jackson, V. Lakshmi, and J. Bolten. 2002. Observations of Soil Moisture using a Passive and Active Low Frequency Microwave Airborne Sensor during SGP99. IEEE Trans. Geosci. Rem. Sens., 40:2659-2673.
Wilson, W.J., S.H. Yueh, S.J. Dinardo, S. Chazanoff, F.K. Li, and Y. Rahmat-Samii. 2001. Passive Active L- and S-band (PALS) Microwave Sensor for Ocean Salinity and Soil Moisture Measurements, IEEE Trans. Geosci. Rem. Sens. 39, 1039-1048.
Yueh, S., S. Dinardo, S. Chan, E. Njoku, T. Jackson, and R. Bindlish. 2008. Passive and Active L-Band System and Observations during the 2007 CLASIC Campaign. Proc. IEEE IGARSS08, (2) II-241 - II-244, July 7-11, 2008.
This data set contains brightness temperatures obtained by the Passive Active L-band System (PALS) aircraft instrument. The data were collected as part of SMAPVEX15, the Soil Moisture Active Passive Validation Experiment 2015.VIEW RELATED INFORMATIONhttps://doi.org/10.5067/50DIUMRHN5E1DocumentationGET DATAhttps://n5eil01u.ecs.nsidc.org/SMAP_VAL/SV15PLTB.001/HTTPSGET DATAhttps://search.earthdata.nasa.gov/search?q=SV15PLTB+V001Earthdata SearchGET DATAhttps://nsidc.org/data/data-access-tool/SV15PLTB/versions/1/Data Access ToolVIEW RELATED INFORMATIONhttp://nsidc.org/data/smap/index.htmlSMAP Data at NSIDCVIEW RELATED INFORMATIONhttp://nsidc.org/data/amsr_validation/soil_moisture/index.htmlAMSR-E Validation Soil Moisture Data at NSIDCPROJECT HOME PAGEhttp://smap.jpl.nasa.gov/SMAP Web Site at the Jet Propulsion LaboratoryUSA/NASACEOS IDN DIFVERSION 9.92017-09-062023-11-29NSIDCVersion SummaryFirst public data releaseNSIDCMinor VersionNSIDCCurrent Version1NSIDCLevel of ServiceStandardNSIDCFull Dataset CitationColliander, A. and S. Misra. 2017. <i>SMAPVEX15 PALS Brightness Temperature Data.</i> [indicate subset used]. Boulder, Colorado USA: NASA National Snow and Ice Data Center Distributed Active Archive Center. <a href="https://doi.org/10.5067/50DIUMRHN5E1">https://doi.org/10.5067/50DIUMRHN5E1</a>. 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