Landsat 9: Empowering open science and applications through continuity

被引:276
作者
Masek, Jeffrey G. [1 ]
Wulder, Michael A. [2 ]
Markham, Brian [1 ]
McCorkel, Joel [1 ]
Crawford, Christopher J. [3 ]
Storey, James [4 ]
Jenstrom, Del T. [5 ]
机构
[1] NASA, Goddard Space Flight Ctr, Biospher Sci Lab, Code 916, Greenbelt, MD 20771 USA
[2] Nat Resources Canada, Canadian Forest Serv, Pacific Forestry Ctr, 506 West Burnside Rd, Victoria, BC V8Z 1M5, Canada
[3] US Geol Survey, Earth Resources Observat & Sci EROS Ctr, 47914 252nd St, Sioux Falls, SD 57198 USA
[4] KBR Inc, 7701 Greenbelt Rd, Greenbelt, MD 20770 USA
[5] NASA, Goddard Space Flight Ctr, Code 429, Greenbelt, MD 20771 USA
基金
美国国家航空航天局;
关键词
SURFACE-TEMPERATURE; RADIOMETRIC CALIBRATION; CLOUD SHADOW; DATA ARCHIVE; IMAGER OLI; VALIDATION; ALGORITHM; PERFORMANCE; SATELLITE; BENEFITS;
D O I
10.1016/j.rse.2020.111968
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The history of Earth observation from space is well reflected through the Landsat program. With data collection beginning with Landsat-1 in 1972, the program has evolved technical capabilities while maintaining continuity of land observations. In so doing, Landsat has provided a critical reference for assessing long-term changes to Earth's land environment due to both natural and human forcing. Poised for launch in mid-2021, the joint NASA-USGS Landsat 9 mission will continue this important data record. In many respects Landsat 9 is a clone of Landsat-8. The Operational Land Imager-2 (OLI-2) is largely identical to Landsat 8 OLI, providing calibrated imagery covering the solar reflected wavelengths. The Thermal Infrared Sensor-2 (TIRS-2) improves upon Landsat 8 TIRS, addressing known issues including stray light incursion and a malfunction of the instrument scene select mirror. In addition, Landsat 9 adds redundancy to TIRS-2, thus upgrading the instrument to a 5-year design life commensurate with other elements of the mission. Initial performance testing of OLI-2 and TIRS-2 indicate that the instruments are of excellent quality and expected to match or improve on Landsat 8 data quality. Landsat-9 will maintain the current data acquisition rate of up to 740 scenes per day, with these scenes available from the Landsat archive at no cost to users. In this communication, we provide background and rationale for the Landsat 9 mission, describe the instrument payloads and ground system, and discuss data products available from the Landsat 9 mission through USGS.
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页数:13
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共 70 条
[1]   Landsat-7 long-term acquisition plan: Development and validation [J].
Arvidson, Terry ;
Goward, Samuel ;
Gasch, John ;
Williams, Darrel .
PHOTOGRAMMETRIC ENGINEERING AND REMOTE SENSING, 2006, 72 (10) :1137-1146
[2]   The Operational Land Imager-2: Prelaunch Spectral Characterization [J].
Barsi, Julia A. ;
Markham, Brian L. ;
McCorkel, Joel ;
McAndrew, Brendan ;
Donley, Eric ;
Morland, Eric ;
Pharr, James ;
Rodriguez, Michael ;
Shuman, Tim ;
Sushkov, Andrei ;
Zukowski, Barbara .
EARTH OBSERVING SYSTEMS XXIV, 2019, 11127
[3]   The Spectral Response of the Landsat-8 Operational Land Imager [J].
Barsi, Julia A. ;
Lee, Kenton ;
Kvaran, Geir ;
Markham, Brian L. ;
Pedelty, Jeffrey A. .
REMOTE SENSING, 2014, 6 (10) :10232-10251
[4]   TOWARDS A LOCAL SPLIT WINDOW METHOD OVER LAND SURFACES [J].
BECKER, F ;
LI, ZL .
INTERNATIONAL JOURNAL OF REMOTE SENSING, 1990, 11 (03) :369-393
[5]   Who launched what, when and why; trends in global land-cover observation capacity from civilian earth observation satellites [J].
Belward, Alan S. ;
Skoien, Jon O. .
ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING, 2015, 103 :115-128
[6]   MODTRAN4 radiative transfer modeling for atmospheric correction [J].
Berk, A ;
Anderson, GP ;
Bernstein, LS ;
Acharya, PK ;
Dothe, H ;
Matthew, MW ;
Adler-Golden, SM ;
Chetwynd, JH ;
Richtsmeier, SC ;
Pukall, B ;
Allred, CL ;
Jeong, LS ;
Hoke, ML .
OPTICAL SPECTROSCOPIC TECHNIQUES AND INSTRUMENTATION FOR ATMOSPHERIC AND SPACE RESEARCH III, 1999, 3756 :348-353
[7]   The Harmonized Landsat and Sentinel-2 surface reflectance data set [J].
Claverie, Martin ;
Ju, Junchang ;
Masek, Jeffrey G. ;
Dungan, Jennifer L. ;
Vermote, Eric F. ;
Roger, Jean-Claude ;
Skakun, Sergii V. ;
Justice, Christopher .
REMOTE SENSING OF ENVIRONMENT, 2018, 219 :145-161
[8]   Development of an Operational Calibration Methodology for the Landsat Thermal Data Archive and Initial Testing of the Atmospheric Compensation Component of a Land Surface Temperature (LST) Product from the Archive [J].
Cook, Monica ;
Schott, John R. ;
Mandel, John ;
Raqueno, Nina .
REMOTE SENSING, 2014, 6 (11) :11244-11266
[9]   Atmospheric Correction Inter-Comparison Exercise [J].
Doxani, Georgia ;
Vermote, Eric ;
Roger, Jean-Claude ;
Gascon, Ferran ;
Adriaensen, Stefan ;
Frantz, David ;
Hagolle, Olivier ;
Hollstein, Andre ;
Kirches, Grit ;
Li, Fuqin ;
Louis, Jerome ;
Mangin, Antoine ;
Pahlevan, Nima ;
Pflug, Bringfried ;
Vanhellemont, Quinten .
REMOTE SENSING, 2018, 10 (02)
[10]   Analysis Ready Data: Enabling Analysis of the Landsat Archive [J].
Dwyer, John L. ;
Roy, David P. ;
Sauer, Brian ;
Jenkerson, Calli B. ;
Zhang, Hankui K. ;
Lymburner, Leo .
REMOTE SENSING, 2018, 10 (09)