Modeling of the atmospheric effects and its application to the remote sensing of ocean color.
Explore this paper's citation graph
Summary
Modeling of the atmospheric effects can be improved by taking into account not only the direct but also the diffuse component of atmospheric transmittance and by a more precise formulation of the interaction between molecular and aerosol scattering in the calculation of atmospheric reflectance.
- Type
- article
- Published
- 1983-12-01
- Cited by
- 122
- References
- 10
- OpenAlex
- https://openalex.org/W2044415801
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:28288161
Keywords
Aerosol, Atmospheric correction, Remote sensing, Atmospheric optics, Ocean color
References
- Nimbus-7 Coastal Zone Color Scanner: System Description and Initial Imagery
- Phytoplankton Pigments from the Nimbus-7 Coastal Zone Color Scanner: Comparisons with Surface Measurements
- Atmospheric effects in the remote sensing of phytoplankton pigments
- Reduction of error introduced in the processing of coastal zone color scanner-type imagery resulting from sensor calibration and solar irradiance uncertainty.
- Clear water radiances for atmospheric correction of coastal zone color scanner imagery.
- Radiometric calibration of the Coastal Zone Color Scanner on Nimbus 7: a proposed adjustment.
- Atmospheric modeling for space measurements of ground reflectances, including bidirectional properties.
- Definitions of atmospheric radiance and transmittances in remote sensing
- An algorithm for remote sensing of water color from space
- Removal of atmospheric effects from satellite imagery of the oceans.
Cited by
- Importance and estimation of aerosol vertical structure in satellite ocean-color remote sensing.
- Technique for monitoring performance of VIIRS reflective solar bands for ocean color data processing.
- SeaWiFS Postlaunch Technical Report Series Cumulative Index: Volumes 1-23
- Météorologie solaire et images satellitaires : cartographie du rayonnement solaire, détermination de l'albédo des sols et évaluation de l'ennuagement
- In Situ Aerosol Optical Thickness Collected by the Simbios Program (1997-2000): Protocols, and and Data Qc and Analysis
- The Coastal Zone Color Scanner (CZCS) Algorithm. A Critical Review of Residual Problems
- Comparison Of Radiative Transfer Models Used To Determine Atmospheric Optical Parameters From Space
- Caractérisation de panaches industriels par imagerie hyperspectrale
- SeaWIFS Postlaunch Technical Report Series. Volume 13; The SeaWiFS Photometer Revision for Incident Surface Measurement (SeaPRISM) Field Commissioning
- Surface roughness considerations for atmospheric correction of ocean color sensors. I - The Rayleigh-scattering component. II - Error in the retrieved water-leaving radiance
- The Use of Satellite-Based Ocean Color Measurements for Detecting the Florida Red Tide (Karenia brevis)
- Retrieval of Aerosol Optical Depth from Oceansat-2 OCM
- A simple atmospheric correction method for the short wave satellite images
- Information on aerosol size distribution contained in solar reflected spectral radiances
- A Multi-Temporal and Multi-Spectral Method to Estimate Aerosol Optical Thickness over Land, for the Atmospheric Correction of FormoSat-2, LandSat, VENμS and Sentinel-2 Images
- Development of an image based integrated method for determining and mapping aerosol optical thickness (AOT) over urban areas using the darkest pixel atmospheric correction method, RT equation and GIS: A case study of the Limassol area in Cyprus
- Minimizing systematic errors from atmospheric multiple scattering and satellite viewing geometry in coastal zone color scanner level IIA imagery
- A robust method for removal of glint effects from satellite ocean colour imagery
- Importance of aerosol vertical structure in satellite ocean-colour remote sensing
- On the Estimation of Thickness of Marine Oil Slicks From Sun-Glittered, Near-Infrared MERIS and MODIS Imagery: The Lebanon Oil Spill Case Study
Related papers
- A Simplified Algorithm to the Atmospheric Transmittance
- Measurements Of Atmospheric Transmittance In A Maritime Environment
- A new approach of generating atmospheric path radiation images based on atmospheric radiation transmittance theory
- Methods of calculating atmospheric transmittance and radiance in the infrared
- Simplified algorithm research of infrared radiation transmission through atmosphere
- Variation of Infrared Atmospheric Transmittance Based on Atmospheric Models in Typical Regions of China
- Calculational Error In Laser Molecular Transmittance Due To Uncertainties In Line And Meteorological Data
- Removal of atmospheric effects from satellite imagery of the oceans.