Evaluation of VIIRS Land Aerosol Model Selection with AERONET Measurements
Explore this paper's citation graph
Summary
Results show that an appropriate aerosol model can improve the retrieval performance of VIIRS over land, particularly for dust type (R increases from 0.61 to 0.72), and misidentifying VIIRS aerosol types may lead to VIIRS retrieval being overestimated over the Eastern United States and the developed regions of East Asia.
- Type
- article
- Published
- 2017-09-01
- Cited by
- 9
- References
- 26
- Access
- Open access
- OpenAlex
- https://openalex.org/W2750830902
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3849438
Keywords
AERONET, Aerosol, Visible Infrared Imaging Radiometer Suite, Environmental science, Remote sensing
References
- Spatio-temporal variability of Suomi-NPP VIIRS-derived aerosol optical thickness over China in 2013
- Macrophysical and optical properties of clouds over East Asia measured by CALIPSO
- Evaluation of VIIRS, GOCI, and MODIS Collection 6 AOD retrievals against ground sunphotometer observations over East Asia
- Spectral discrimination of coarse and fine mode optical depth
- Dynamic aerosol model: Urban/industrial aerosol
- Accuracy assessments of aerosol optical properties retrieved from Aerosol Robotic Network (AERONET) Sun and sky radiance measurements
- The CALIPSO Automated Aerosol Classification and Lidar Ratio Selection Algorithm
- Aerosols, clouds and radiation
- NOAA AVHRR derived aerosol optical depth over land
- Characteristics of aerosol types from AERONET sunphotometer measurements
- AERONET-a federated instrument network and data archive for aerosol Characterization
- Suomi‐NPP VIIRS aerosol algorithms and data products
- The Collection 6 MODIS aerosol products over land and ocean
- Global and regional evaluation of over-land spectral aerosol optical depth retrievals from SeaWiFS
- Second‐generation operational algorithm: Retrieval of aerosol properties over land from inversion of Moderate Resolution Imaging Spectroradiometer spectral reflectance
- Aerosols and surface UV products from Ozone Monitoring Instrument observations: An overview
- A satellite view of aerosols in the climate system
- Variability of Absorption and Optical Properties of Key Aerosol Types Observed in Worldwide Locations
- Preliminary evaluation of S‐NPP VIIRS aerosol optical thickness
- Seasonal variations in aerosol optical thickness over eastern China determined from VIIRS data and ground measurements
Cited by
- Enhanced Aerosol Estimations From Suomi-NPP VIIRS Images Over Heterogeneous Surfaces
- Estimating Spatio-Temporal Variations of PM2.5 Concentrations Using VIIRS-Derived AOD in the Guanzhong Basin, China
- Impact of the Dust Aerosol Model on the VIIRS Aerosol Optical Depth (AOD) Product across China
- Impact of Aerosol Vertical Distribution on Aerosol Optical Depth Retrieval from Passive Satellite Sensors
- Refining aerosol optical depth retrievals over land by constructing the relationship of spectral surface reflectances through deep learning: Application to Himawari-8
- Difference between global and regional aerosol model classifications and associated implications for spaceborne aerosol optical depth retrieval
- Global aerosol models considering their spatial heterogeneities based on AERONET measurements
- Dust Aerosol Radiative Effects During a Dust Event and Heatwave in Summer 2019 Simulated with a Regional Climate Atmospheric Model over the Iberian Peninsula
- Vertical distribution of type-discriminated aerosol concentration from the three-wavelength backscatter spaceborne lidar of the Atmosphere Observing System (AOS)
- Vertical distribution of type-discriminated aerosol concentration from a three-wavelength backscatter spaceborne lidar
Related papers
- Assessment of Aerosol Modes Used in the MODIS Ocean Aerosol Retrieval
- An AERONET-based aerosol classification using the Mahalanobis distance
- The MODIS Aerosol Algorithm, Products, and Validation
- ELT site prospect in Morocco: aerosol characterization
- Characteristics of aerosol types from AERONET sunphotometer measurements
- AEROSOL PROPERTIES IN MOSCOW ACCORDING TO 10 YEARS OF AERONET MEASUREMENTS AT THE METEOROLOGICAL OBSERVATORY OF MOSCOW STATE UNIVERSITY
- Estimation of the Elemental to Organic Carbon Ratio in Biomass Burning Aerosol Using AERONET Retrievals
- AERONET data-based determination of aerosol types