34 results on '"Lim, Hyunkwang"'
Search Results
2. Temporal variation of surface reflectance and cloud fraction used to identify background aerosol retrieval information over East Asia
3. Fine particulate concentrations over East Asia derived from aerosols measured by the advanced Himawari Imager using machine learning
4. Aerosol optical depth data fusion with Geostationary Korea Multi-Purpose Satellite (GEO-KOMPSAT-2) instruments GEMS, AMI, and GOCI-II: statistical and deep neural network methods.
5. Ground-based retrievals of aerosol column absorption in the UV spectral region and their implications for GEMS measurements
6. Implementation of the Yonsei Aerosol retrieval algorithm in the GK-2A/AMI and FY-4A/AGRI remote-sensing systems
7. AOD data fusion with Geostationary Korea Multi-Purpose Satellite (Geo-KOMPSAT) instruments GEMS, AMI, and GOCI-II: Statistical and deep neural network methods
8. Analysis of long-range transboundary transport (LRTT) effect on Korean aerosol pollution during the KORUS-AQ campaign
9. Satellite-based, top-down approach for the adjustment of aerosol precursor emissions over East Asia: the TROPOspheric Monitoring Instrument (TROPOMI) NO2 product and the Geostationary Environment Monitoring Spectrometer (GEMS) aerosol optical depth (AOD) data fusion product and its proxy
10. Potential improvement of XCO2 retrieval of the OCO-2 by having aerosol information from the A-train satellites
11. Supplementary material to "Satellite-based, top-down approach for the adjustment of aerosol precursor emissions over East Asia: The Geostationary Environment Monitoring Spectrometer (GEMS) data fusion product and its proxies"
12. Satellite-based, top-down approach for the adjustment of aerosol precursor emissions over East Asia: The Geostationary Environment Monitoring Spectrometer (GEMS) data fusion product and its proxies
13. Aerosol Layer Height Retrieval Over Ocean From the Advanced Himawari Imager Using Spectral Reflectance Sensitivity
14. Exploring geometrical stereoscopic aerosol top height retrieval from geostationary satellite imagery in East Asia
15. Supplementary material to "Exploring geometrical stereoscopic aerosol top height retrieval from geostationary satellite imagery in East Asia"
16. Exploring geometrical stereoscopic aerosol top height retrieval from geostationary satellite imagery in East Asia.
17. Fine Particulate Concentrations Over East Asia Derived from Aerosols Measured by the Advanced Himawari Imager Using Machine Learning
18. Satellite-based, top-down approach for the adjustment of aerosol precursor emissions over East Asia: The Geostationary Environment Monitoring Spectrometer (GEMS) data fusion product and its proxies.
19. Potential improvement of XCO2 retrieval of the OCO-2 by having aerosol information from the A-train satellites.
20. Relating geostationary satellite measurements of aerosol optical depth (AOD) over East Asia to fine particulate matter (PM<sub>2.5</sub>): insights from the KORUS-AQ aircraft campaign and GEOS-Chem model simulations
21. Supplementary material to "Interpretation of geostationary satellite aerosol optical depth (AOD) over East Asia in relation to fine particulate matter (PM<sub>2.5</sub>): insights from the KORUS-AQ aircraft campaign and seasonality"
22. Interpretation of geostationary satellite aerosol optical depth (AOD) over East Asia in relation to fine particulate matter (PM2.5): insights from the KORUS-AQ aircraft campaign and seasonality
23. Integration of GOCI and AHI Yonsei aerosol optical depth products during the 2016 KORUS-AQ and 2018 EMeRGe campaigns
24. Retrieval of Aerosol Optical Properties over East Asia from TROPOMI using GEMS Aerosol Algorithm
25. Synergistic Use of Hyperspectral UV-Visible OMI and Broadband Meteorological Imager MODIS Data for a Merged Aerosol Product
26. Integration of GOCI and AHI Yonsei Aerosol Optical Depth Products During the 2016 KORUS-AQ and 2018 EMeRGe Campaigns
27. Interpretation of geostationary satellite aerosol optical depth (AOD) over East Asia in relation to fine particulate matter (PM2.5): insights from the KORUS-AQ aircraft campaign and seasonality.
28. Validation, comparison, and integration of GOCI, AHI, MODIS, MISR, and VIIRS aerosol optical depth over East Asia during the 2016 KORUS-AQ campaign
29. AHI/Himawari-8 Yonsei Aerosol Retrieval (YAER): Algorithm, Validation and Merged Products
30. Intercomparing the Aerosol Optical Depth Using the Geostationary Satellite Sensors (AHI, GOCI and MI) from Yonsei AErosol Retrieval (YAER) Algorithm
31. Correlation analysis between regional carbon monoxide and black carbon from satellite measurements
32. Retrieval and Validation of Aerosol Optical Properties Using Japanese Next Generation Meteorological Satellite, Himawari-8
33. Potential improvement of XCO2retrieval of the OCO-2 by having aerosol information from the A-train satellites
34. Intercomparison of total column ozone data from the Pandora spectrophotometer with Dobson, Brewer, and OMI measurements over Seoul, Korea
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