An overview of sensor calibration inter-comparison and applications

Xiaoxiong Xiong1, Changyong Cao2, Gyanesh Chander3
1NASA Goddard Space Flight Center (GSFC), Sciences Exploration Directorate, Greenbelt, USA
2NOAA National Environmental Satellite, Data, and Information Service (NESDIS), Office of Research and Applications, Camp Springs, MD, 20746, USA
3SGT, Inc., U.S. Geological Survey (USGS) Earth Resources Observation and Science (EROS) Center, Sioux Falls, SD, 57198, USA

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Tài liệu tham khảo

Barnes W L, Pagano T S, Salomonson V V (1998). Prelaunch characteristics of the Moderate Resolution Imaging Sectroradiometer (MODIS) on EOS-AM1. IEEE Trans Geosci Remote Sensing, 36: 1088–1100

Barnes W L, Salomonson V V (1993). MODIS: A global image spectroradiometer for the Earth Observing System. Critical Reviews of Optical Science and Technology, CR47: 285–307

Barnes WL, Xiong X, Eplee R, Sun J, Lyu C H (2006). Use of the Moon for calibration and characterization of MODIS, SeaWiFS, and VIRS. Earth Science Satellite Remote Sensing, 2: 98–119

Brown O B, Brown J, Evans R (1985). Calibration of advanced very high resolution radiometer infrared observations. J Geophys Res, 90(C6): 11667–11677

Cabot F, Hagolle O, Henry P (2000). Relative and Multi-Temporal Calibration of AVHRR, Seawifs, and Vegetation Using POLDER Characterization of Desert Sites. Proceedings of IGARSS, 2000: 2188–2190

Cabot F, Hagolle O, Ruffel C, Henry P (1999). Use of remote sensing data repository for in-flight calibration of optical sensors over terrestrial targets. Proceedings of SPIE 3750: 514–523

Cao C, Heidinger A (2002). Inter-Comparison of the Longwave Infrared Channels of MODIS and AVHRR/NOAA-16 using Simultaneous Nadir Observations at Orbit Intersections. Proceedings of SPIE 4814: 306–316

Cao C, Sullivan J, Maturi E, Sapper J (2004a). The effect of orbit drift on the calibration of the 3.7 um channel of the AVHRR onboard NOAA-14 and its impact on night-time sea surface temperature retrievals. Int J Remote Sens, 25(5): 975–986

Cao C, Weinreb M, Sullivan J (2001). Solar Contamination Effects on the Infrared Channels of the AVHRR. J Geophys Res, 106(No D24): 33463–33469

Cao C, Weinreb M, Xu H (2004b). Predicting simultaneous nadir overpasses among polar-orbiting meteorological satellites for the intersatellite calibration of radiometers. Journal of Atmospheric and Oceanic Technology, 21: 537–542

Cao C, Xiong X, Wu A, Wu X (2008). Assessing the consistency of AVHRR and MODIS L1B reflectance for generating Fundamental Climate Data Records. J Geophys Res, 113, D09114. doi:10.1029/2007JD009363

Cao C, Xu H, Sullivan J, McMillin L, Ciren P, Hou Y (2005). Intersatellite radiance biases for the High Resolution Infrared Radiation Sounders (HIRS) onboard NOAA-15, -16, and -17 from simultaneous nadir observations. Journal of Atmospheric and Oceanic Technology, 22(4): 381–395

Chander G, Xiong X, Angal A, Choi T (2009). An Assessment of African Test Sites in the Context of a Global Network of Quality-Assured Reference Standards. Proceedings of IGARSS 2009

Cohen W B, Goward S N (2004). Landsat’s role in ecological applications of remote sensing. BioScience, 54(6): 535–545

Eplee R E, Bailey S, Barnes R, Kieffer H H, McClain C R (2006). Comparison of SeaWiFS on-orbit Lunar and Vicarious Calibrations. Proceedings of SPIE 6296

Esaias W, Abbott M, Barton I, Brown O, Campbell J, Carder K, Clark D, Evans R, Hoge F, Gordon H, Balch W, Letelier R, Minnett P (1998). An Overview of MODIS Capabilities for Ocean Science Observations. IEEE Trans Geosci Remote Sensing, 36: 1250–1265

Goward S N, Irons J, Franks S, Arvidson T, Williams D, Faundeen J (2006). Historical record of landsat global coverage: mission operations, NSLRSDA, and international cooperator stations. Photogrammetric Engineering and Remote Sensing, 72: 1155–1169

Goward S N, Williams D L (1997). Landsat and Earth Systems Science: development of terrestrial monitoring. Photogrammetric Engineering and Remote Sensing, 63(7): 887–900

Guenther B, Butler J, Ardanuy P (1997). Workshop on Strategies for Calibration and Validation of Global Change and Measurements. NASA Reference Publication 1397

Heidinger A K, Cao C, Sullivan J T (2002). Using Moderate Resolution Imaging Spectrometer (MODIS) to calibrate advanced very high resolution radiometer reflectance channels, J Geophys Res, 107(D23), 4702. doi:10.1029/2001JD002035

Hook S, Vaughan R, Tonooka H, Schladow S (2007). Absolute Radiometric In-Flight Validation of Mid and Thermal Infrared Data from ASTER and MODIS on the Terra Spacecraft Using the Lake Tahoe CA/NV, USA Automated Validation Site. IEEE Trans Geosci Remote Sensing, 45(6): 1798–1807

Justice C, Vermote E, Townshend J, Defries R, Roy D, Hall D, Salomonson V, Privette J, Riggs G, Strahler A, Lucht W, Myneni B, Lewis P, Barnsley M (1998). The Moderate Resolution Imaging Spectroradiometer (MODIS): land Remote Sensing for Global Change Research. IEEE Trans Geosci Remote Sensing, 36: 1228–1249

Kieffer H H, Stone T (2005). The Spectral Irradiance of the Moon. The Astron J, 129(6): 2887–2901

King M, Menzel W, Kaufman Y, Tanre D, Gao B, Platnick S, Ackerman S, Remer L, Pincus R, Hubanks P (2003). Cloud and aerosol properties, precipitable water, and profiles of temperature and water vapor from MODIS. IEEE Trans Geosci Remote Sensing, 41: 442–458

Markham B, Thome K, Barsi J, Kaita E, Helder D, Barker J, Scaramuzza, P (2004). Landsat-7 ETM+ on-orbit reflective-band radiometric stability and absolute calibration. IEEE Trans Geosci Remote Sensing, 42(12): 2810–2820

Masek J G, Vermote E, Huang C, Wolfe R, Cohen W, Hall F, Kutler J, Nelson P (2008). North American forest disturbance mapped from a decadal Landsat record. Remote Sensing of Environment, 112: 2914–2926

Minnett P, Brown O, Evans R, Key E, Kearns E, Kilpatrick K, Kumar A, Maillet K, Szczodrak M (2004). Sea-surface Temperature Measurements from the Moderate-Resolution Imaging Spectroradiometer (MODIS) on Aqua and Terra. Proceedings of IGARSS 2004: 4576–4579

Ohring B, Wielicki R, Spencer B, Emery W, Datla R (2004). Workshop Report: Satellite Instrument Calibration for Measuring Global Climate Change. NISTIR 7074

Ohring G, Anderson J G, Ardanuy P, Bingham G, Butler J, Cao C, Datla R, Dykema J, Emery W, Flynn L, Fraser G, Goldberg M, Kopp G, Iguchi T, Kunkee D, Leroy S, Miller L, Pollock D, Revercomb H, Shipley S, St. Germain K, Stone T, Tansock J, Thurgood A, Tobin D, Ungar S, Weng F, Wielicki B, Winker D, Xiong X (2008). Achieving Satellite Instrument Calibration for Climate Change. Camp Spring: NOAA NESDIS Publication

Parkinson C L (2003). Aqua: an earth-observing satellite mission to examine water and other climate variables. IEEE Trans Geosci Remote Sensing, 41: 173–183

Rao N, Chen J (1999). Revised post-launch calibration of the visible and near-IR channels NOAA14/AVHRR. Int J Remote Sens, 20: 3485–3491

Salomonson V, Barnes W, Xiong X, Kempler S, Masuoka E (2002). An Overview of the Earth Observing System MODIS Instrument and Associated Data Systems Performance. Proceedings of IGARSS, 2002

Schaaf C B, Gao F, Strahler A H, Lucht W, Li X, Tsang T, Strugnell N C, Zhang X, Jin Y, Muller J P, Lewis P, Barnsley M, Hobson P, Disney M, Roberts G, Dunderdale M, Doll C, d’Entremont R P, Hu N, Liang S, Privette J L, Roy D (2002). First operational BRDF, albedo nadir reflectance products from MODIS. Remote Sensing of Environment, 83: 135–148

Six D, Fily M, Alvain S, Henry P, Benoist J (2004). Surface Characterisation of the Dome Concordia Area (Antarctica) as a Potential Satellite Calibration Site Using SPOT 4/VEGETATION Instrument. Remote Sensing of Environment, 89: 83–94

Steyn-Ross D A, Steyn-Ross M, Clift S (1992). Radiance calibrations for AVHRR infrared channels. J Geophys Res, 97(C4): 5551–5568

Sun J, Xiong X, Barnes W L, Guenther B (2007). MODIS reflective solar bands on-orbit lunar calibration. IEEE Trans Geosci Remote Sens, 45(7): 2383–2393

Thome K, Czapla-Myer J, Biggar S (2003). Vicarious calibration of Aqua and Terra MODIS. In: Proceedings of SPIE 5151: 395–405

Trishchenko A P (2002). Removing unwanted fluctuations in the AVHRR thermal calibration data using robust techniques. Journal of Atmospheric and Oceanic Technology, 19: 1939–1954

Trishchenko A P, Fedosejevs G, Li Z, Cihlar J (2002). Trends and uncertainties in thermal calibration of AVHRR radiometers onboard NOAA-9 to NOAA-16. J Geophys Res, 107(24): 1701–1713

Vogelmann J E, Howard SM, Yang L, Larson C R, Wylie B K, Van Driel J N (2001). Completion of the 1990’s National Land Cover Data Set for the conterminous United States. Photogrammetric Engineering and Remote Sensing, 67: 650–662

Walton C, Sullivan J, Rao C, Weinreb M(1998). Corrections for detector nonlinearities and calibration inconsistencies of the infrared channels of the AVHRR. J Geophys Res, 103: 3323–3337

Wan Z, Zhang Y, Zhang Q, Li Z (2004). Quality Assessment and Validation of the MODIS Global Land Surface Temperature. Int J Remote Sensing, 25(1): 261–274

Warren S G, Brandt R E (1998). Effect of surface roughness on bidirectional reflectance of Antarctic snow. J Geophys Res, 103, E11, 25: 789–807

Wenny B, Xiong X (2008). Using a Cold Earth Surface Target to Characterize Long-term Stability of the MODIS Thermal Emissive Bands. IEEE Geosci Remote Sens Let, 5(2): 162–165

Woodcock C E, Macomber S A, Pax-Lenney M, Cohen W C (2001). Monitoring large areas for forest change using Landsat: Generalization across space, time and Landsat sensors. Remote Sensing of Environment, 78: 194–203

Wu A, Cao C, Xiong X (2003). Intercomparison of the 11-and 12-µm bands of Terra and Aqua MODIS using NOAA-17 AVHRR. Proceedings of SPIE 5151: 384–394

Wu A, X Xiong X, Cao C (2008). Terra and Aqua MODIS Intercomparison of three reflective solar bands using AVHRR onboard the NOAA-KLM satellites. Int J Remote Sens, 29(7): 1997–2010

Wulder M A, White J C, Goward S N, Masek J G, Irons J R, Herold M, Cohen W B, Loveland T R, Woodcock C E (2008). Landsat continuity: issues and opportunities for land cover monitoring. Remote Sensing of Environment, 112: 955–969

Xiong X, Barnes W (2006). An Overview of MODIS radiometric calibration and characterization. Advances in Atmospheric Sciences, 23(1): 69–79

Xiong X, Chiang K, Esposito J, Guenther B, Barnes W (2003). MODIS on-orbit calibration and characterization. motrologia, 40: 89–92

Xiong X, Sun J, Barnes W (2008). Inter-comparison of on-orbit calibration consistency between terra and aqua MODIS reflective solar bands using the moon. IEEE Geosci Remote Sens Let, 5(4): 778–782. doi:10.1109/LGRS.2008.2005591

Xiong X, Wenny B, Barnes W L (2009a). Overview of NASA earth observing systems terra and aqua moderate resolution imaging spectroradiometer instrument calibration algorithms and on-orbit performance. J Appl Remote Sens, 3, 032501. doi: 10.1117/1.3180864

Xiong X, Wu A, Cao C (2008). On-orbit calibration and intercomparison of terra and aqua MODIS surface temperature spectral bands, Int J Remote Sens, 29(17): 5347–5359

Xiong X, Wu A, Sun J, Wenny B (2006). An overview of intercomparison methodologies for terra and aqua MODIS calibration. Proceedings of SPIE 6296, 62960C. doi: 10.1117/12.679162

Xiong X, Wu A, Wenny B (2009b). Using dome C for MODIS calibration stability and consistency. J Appl Remote Sens, 3, 033520, doi: 10.1117/1.3116663