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Bo-Cai Gao
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2020 – today
- 2024
- [j35]David Groeneveld, Tim Ruggles, Bo-Cai Gao:
Landsat-8/9 Atmospheric Correction Reliability Using Scene Statistics. Remote. Sens. 16(12): 2216 (2024) - [j34]Bo-Cai Gao, Rong-Rong Li, Yun Yang, Martha C Anderson:
Correction of Thin Cirrus Absorption Effects in Landsat 8 Thermal Infrared Sensor Images Using the Operational Land Imager Cirrus Band on the Same Satellite Platform. Sensors 24(14): 4697 (2024) - 2023
- [j33]Bo-Cai Gao, Rong-Rong Li:
A Multi-Band Atmospheric Correction Algorithm for Deriving Water Leaving Reflectances over Turbid Waters from VIIRS Data. Remote. Sens. 15(2): 425 (2023) - [j32]Bo-Cai Gao, Rong-Rong Li:
The VIIRS Cirrus Reflectance Algorithm. Sensors 23(4): 2234 (2023) - 2020
- [j31]Bo-Cai Gao, Rong-Rong Li:
Improving Water Leaving Reflectance Retrievals from ABI and AHI Data Acquired Over Case 2 Waters from Present Geostationary Weather Satellite Platforms. Remote. Sens. 12(19): 3257 (2020) - [j30]Bo-Cai Gao, Evan Ward, Jeffrey H. Bowles, Adam Yingling:
A Systematic Sensitivity Study on Surface Pixel Shifts in High Spatial Resolution Satellite Images Resulting from Atmospheric Refraction in the Sensor to Surface Ray Path. Sensors 20(23): 6874 (2020)
2010 – 2019
- 2019
- [j29]Bo-Cai Gao, Rong-Rong Li, Yuekui Yang:
Remote Sensing of Daytime Water Leaving Reflectances of Oceans and Large Inland Lakes from EPIC onboard the DSCOVR Spacecraft at Lagrange-1 Point. Sensors 19(5): 1243 (2019) - 2018
- [j28]Bo-Cai Gao, Rong-Rong Li:
FVI - A Floating Vegetation Index Formed with Three Near-IR Channels in the 1.0-1.24 μm Spectral Range for the Detection of Vegetation Floating over Water Surfaces. Remote. Sens. 10(9): 1421 (2018) - 2017
- [j27]Bo-Cai Gao, Rong-Rong Li:
Removal of Thin Cirrus Scattering Effects in Landsat 8 OLI Images Using the Cirrus Detecting Channel. Remote. Sens. 9(8): 834 (2017) - [j26]Karl Fred Huemmrich, Petya K. E. Campbell, Bo-Cai Gao, Larry B. Flanagan, Michael Goulden:
ISS as a Platform for Optical Remote Sensing of Ecosystem Carbon Fluxes: A Case Study Using HICO. IEEE J. Sel. Top. Appl. Earth Obs. Remote. Sens. 10(10): 4360-4375 (2017) - 2015
- [j25]Brian D. Bue, David R. Thompson, Michael L. Eastwood, Robert O. Green, Bo-Cai Gao, Didier Keymeulen, Charles M. Sarture, Alan S. Mazer, Huy H. Luong:
Real-Time Atmospheric Correction of AVIRIS-NG Imagery. IEEE Trans. Geosci. Remote. Sens. 53(12): 6419-6428 (2015) - 2014
- [j24]John P. Ryan, Curtiss O. Davis, Nicholas B. Tufillaro, Raphael M. Kudela, Bo-Cai Gao:
Application of the Hyperspectral Imager for the Coastal Ocean to Phytoplankton Ecology Studies in Monterey Bay, CA, USA. Remote. Sens. 6(2): 1007-1025 (2014) - 2013
- [j23]Wei Chen, Bo-Cai Gao:
A Multispectral Decomposition Technique for the Recovery of True SeaWiFS Top-of-Atmosphere Radiances. IEEE Geosci. Remote. Sens. Lett. 10(2): 288-292 (2013) - [j22]Bo-Cai Gao, Ming Liu:
A Fast Smoothing Algorithm for Post-Processing of Surface Reflectance Spectra Retrieved from Airborne Imaging Spectrometer Data. Sensors 13(10): 13879-13891 (2013) - [c15]E. E. Heupel, Heidi Melita Dierssen, Bo-Cai Gao, Robert O. Green, Pantazis Mouroulis:
Hyperspectral remote sensing in coastal regions: Prism field validation in Elkhorn Slough. WHISPERS 2013: 1-4 - 2012
- [j21]Wei Chen, Richard P. Mied, Bo-Cai Gao, Ellen J. Wagner:
Surface Velocities From Multiple-Tracer Image Sequences. IEEE Geosci. Remote. Sens. Lett. 9(4): 769-773 (2012) - [j20]Bo-Cai Gao, Rong-Rong Li:
Removal of Thin Cirrus Scattering Effects for Remote Sensing of Ocean Color From Space. IEEE Geosci. Remote. Sens. Lett. 9(5): 972-976 (2012) - [j19]Rong-Rong Li, Robert Lucke, Daniel Korwan, Bo-Cai Gao:
A Technique For Removing Second-Order Light Effects From Hyperspectral Imaging Data. IEEE Trans. Geosci. Remote. Sens. 50(3): 824-830 (2012) - [j18]Qingyuan Zhang, Elizabeth M. Middleton, Bo-Cai Gao, Yen-Ben Cheng:
Using EO-1 Hyperion to Simulate HyspIRI Products for a Coniferous Forest: The Fraction of PAR Absorbed by Chlorophyll $(\hbox{fAPAR}_{\rm chl})$ and Leaf Water Content (LWC). IEEE Trans. Geosci. Remote. Sens. 50(5-2): 1844-1852 (2012) - 2011
- [j17]Bo-Cai Gao, Rong-Rong Li, Eric P. Shettle:
Cloud Remote Sensing Using Midwave IR CO2 and N2O Slicing Channels near 4.5 μm. Remote. Sens. 3(5): 1006-1013 (2011) - 2010
- [j16]Li Li, Peter W. Gaiser, Bo-Cai Gao, Richard M. Bevilacqua, Thomas J. Jackson, Eni G. Njoku, Christoph Rüdiger, Jean-Christophe Calvet, Rajat Bindlish:
WindSat Global Soil Moisture Retrieval and Validation. IEEE Trans. Geosci. Remote. Sens. 48(5): 2224-2241 (2010) - [c14]Rong-Rong Li, Robert Lucke, Michael Corson, Daniel Korwan, Bo-Cai Gao:
Correction of second order light for the HICOTM sensor onboard the international space satation. IGARSS 2010: 2303-2306 - [c13]Michael Corson, Robert Lucke, Curtiss O. Davis, Jeffrey H. Bowles, Davidson Chen, Bo-Cai Gao, Daniel Korwan, W. David Miller, William A. Snyder:
The Hyperspectral Imager for the Coastal Ocean (HICOTM) environmental littoral imaging from the International Space Station. IGARSS 2010: 3752-3755 - [c12]Bo-Cai Gao, Rong-Rong Li:
Spectral calibrations of HICO data using atmospheric bands and radiance adjustment based on HICO and MODIS data comparisons. IGARSS 2010: 4260-4263
2000 – 2009
- 2008
- [c11]Bo-Cai Gao, Rong-Rong Li:
The Time Series of Terra and Aqua MODIS Near-IR Water Vapor Products. IGARSS (3) 2008: 186-189 - [c10]Bo-Cai Gao, Rong-Rong Li:
The Spatial and Temporal Variations of High Clouds based on the MODIS 1.375-Micron Channel Measurements. IGARSS (5) 2008: 582-585 - 2007
- [j15]Kerry Meyer, Ping Yang, Bo-Cai Gao:
Ice Cloud Optical Depth From MODIS Cirrus Reflectance. IEEE Geosci. Remote. Sens. Lett. 4(3): 471-474 (2007) - [j14]Bo-Cai Gao, Marcos J. Montes, Rong-Rong Li, Heidi Melita Dierssen, Curtiss O. Davis:
An Atmospheric Correction Algorithm for Remote Sensing of Bright Coastal Waters Using MODIS Land and Ocean Channels in the Solar Spectral Region. IEEE Trans. Geosci. Remote. Sens. 45(6-2): 1835-1843 (2007) - [c9]Bo-Cai Gao, Marcos J. Montes, Rong-Rong Li:
A multi-channel atmospheric correction algorithm for remote sensing of coastal waters. IGARSS 2007: 54-56 - 2006
- [c8]Bo-Cai Gao, Xiaoxiong Xiong, Rong-Rong Li:
A Study of MODIS Fire Detecting Channel Centered at 3.95-m. IGARSS 2006: 1100-1102 - [c7]Bo-Cai Gao, Curtiss O. Davis, Alexander F. H. Goetz:
A Review of Atmospheric Correction Techniques for Hyperspectral Remote Sensing of Land Surfaces and Ocean Color. IGARSS 2006: 1979-1981 - [c6]Curtiss O. Davis, Kendall L. Carder, Bo-Cai Gao, ZhongPing Lee, W. Paul Bissett:
The Development of Imaging Spectrometry of the Coastal Ocean. IGARSS 2006: 1982-1985 - [c5]Michael E. Schaepman, Robert O. Green, Stephen G. Ungar, Brian Curtiss, Joseph W. Boardman, Antonio J. Plaza, Bo-Cai Gao, Susan L. Ustin, Raymond F. Kokaly, John R. Miller, Stephane Jacquemoud, Eyal Ben-Dor, Roger N. Clark, Curtiss O. Davis, Jeff Dozier, David G. Goodenough, Dar A. Roberts, Gregg Alan Swayze, Edward J. Milton, Alexander F. H. Goetz:
The Future of Imaging Spectroscopy Prospective Technologies and Applications. IGARSS 2006: 2005-2009 - [c4]Rong-Rong Li, Lorraine Remer, Yoram J. Kaufman, Shana Mattoo, Bo-Cai Gao, Eric F. Vermote:
Masking of Residual Snow and Ice Covered Surfaces for Improving Aerosol Retrievals From MODIS Data. IGARSS 2006: 2236-2238 - 2005
- [j13]Pui-King Chan, Bo-Cai Gao:
A comparison of MODIS, NCEP, and TMI sea surface temperature datasets. IEEE Geosci. Remote. Sens. Lett. 2(3): 270-274 (2005) - [j12]Rong-Rong Li, Lorraine Remer, Yoram J. Kaufman, Shana Mattoo, Bo-Cai Gao, Eric F. Vermote:
Snow and ice mask for the MODIS aerosol products. IEEE Geosci. Remote. Sens. Lett. 2(3): 306-310 (2005) - 2004
- [j11]Kerry Meyer, Ping Yang, Bo-Cai Gao:
Optical thickness of tropical cirrus clouds derived from the MODIS 0.66and 1.375-μm channels. IEEE Trans. Geosci. Remote. Sens. 42(4): 833-841 (2004) - [j10]Rong-Rong Li, Yoram J. Kaufman, Wei Min Hao, J. Meghan Salmon, Bo-Cai Gao:
A technique for detecting burn scars using MODIS data. IEEE Trans. Geosci. Remote. Sens. 42(6): 1300-1308 (2004) - [j9]Bo-Cai Gao, Kerry Meyer, Ping Yang:
A new concept on remote sensing of cirrus optical depth and effective ice particle size using strong water vapor absorption channels near 1.38 and 1.88 μm. IEEE Trans. Geosci. Remote. Sens. 42(9): 1891-1899 (2004) - [c3]Marcos J. Montes, Robert A. Fusina, Timothy F. Donato, Charles M. Bachmann, Bo-Cai Gao:
The effects of atmospheric correction schemes on the hyperspectral imaging of littoral environments. IGARSS 2004: 4187-4190 - 2003
- [j8]Michael D. King, W. Paul Menzel, Yoram J. Kaufman, Didier Tanré, Bo-Cai Gao, Steven Platnick, Steven A. Ackerman, Lorraine Remer, Robert Pincus, Paul A. Hubanks:
Cloud and aerosol properties, precipitable water, and profiles of temperature and water vapor from MODIS. IEEE Trans. Geosci. Remote. Sens. 41(2): 442-458 (2003) - [j7]Bo-Cai Gao, Ping Yang, Rong-Rong Li:
Detection of high clouds in polar regions during the daytime using the MODIS 1.375-μm channel. IEEE Trans. Geosci. Remote. Sens. 41(2): 474-481 (2003) - [j6]Rong-Rong Li, Yoram J. Kaufman, Bo-Cai Gao, Curtiss O. Davis:
Remote sensing of suspended sediments and shallow coastal waters. IEEE Trans. Geosci. Remote. Sens. 41(3): 559-566 (2003) - [j5]Bo-Cai Gao, Ping Yang, Guang Guo, Seon-Ki Park, Warren J. Wiscombe, Baode Chen:
Measurements of water vapor and high clouds over the Tibetan Plateau with the Terra MODIS instrument. IEEE Trans. Geosci. Remote. Sens. 41(4): 895-900 (2003) - 2002
- [j4]Bo-Cai Gao, Ping Yang, Wei Han, Rong-Rong Li, Warren J. Wiscombe:
An algorithm using visible and 1.38-μm channels to retrieve cirrus cloud reflectances from aircraft and satellite data. IEEE Trans. Geosci. Remote. Sens. 40(8): 1659-1668 (2002) - [c2]Bo-Cai Gao:
Regional and global variations of water vapor and high clouds inferred from two years' measurements with MODIS near-IR channels. IGARSS 2002: 1185-1187 - [c1]Ping Yang, Yong X. Hu, Jun Zhao, David M. Winker, Chris A. Hostetler, Bryan A. Baum, Si-Chee Tsay, Bo-Cai Gao, Michael I. Mishchenko:
The enhancement of lidar backscattering by horizontally oriented ice crystal plates in cirrus clouds. IGARSS 2002: 3608-3610 - 2000
- [j3]Bo-Cai Gao:
A practical method for simulating AVHRR-consistent NDVI data series using narrow MODIS channels in the 0.5-1.0 μm spectral range. IEEE Trans. Geosci. Remote. Sens. 38(4): 1969-1975 (2000)
1990 – 1999
- 1997
- [j2]Yoram J. Kaufman, Andrew E. Wald, Lorraine Remer, Bo-Cai Gao, Rong-Rong Li, Luke Flynn:
The MODIS 2.1-μm channel-correlation with visible reflectance for use in remote sensing of aerosol. IEEE Trans. Geosci. Remote. Sens. 35(5): 1286-1298 (1997) - 1992
- [j1]Yoram J. Kaufman, Bo-Cai Gao:
Remote sensing of water vapor in the near IR from EOS/MODIS. IEEE Trans. Geosci. Remote. Sens. 30(5): 871-884 (1992)
Coauthor Index
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