Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast

Aerosol optical thickness (AOT) was provided by SeaWiFS over oceans from October 1997 to December 2010. Weekly, monthly, and annually maps might help scientifics to better understand climate change and its impacts. Making average of several images to get these maps is not suitable on West African co...

Full description

Bibliographic Details
Main Author: Diouf, Daouda
Format: Book Part
Language:English
Published: IntechOpen 2016
Subjects:
Online Access:https://openresearchlibrary.org/viewer/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684
https://openresearchlibrary.org/ext/api/media/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684/assets/external_content.pdf
https://doi.org/10.5772/65874
_version_ 1821545597000220672
author Diouf, Daouda
author_facet Diouf, Daouda
author_sort Diouf, Daouda
collection Open Research Library
description Aerosol optical thickness (AOT) was provided by SeaWiFS over oceans from October 1997 to December 2010. Weekly, monthly, and annually maps might help scientifics to better understand climate change and its impacts. Making average of several images to get these maps is not suitable on West African coast. A particularity of this area is that it is constantly traversed by desert dust. The algorithm used by SeaWiFS inverts the reflectance measurements to retrieve the aerosol optical thickness at 865 nm. For the poorly absorbing aerosol optical thickness less than 0.35, the standard algorithm works very well. On the west African coast that is often crossed by desert aerosol plumes characterized by high optical thicknesses. In this paper we study the spatial and temporal variability of aerosols on the West African coast during the period from December 1997 to November 2009 by using neural network inversion. The neural network method we used is mixed method of neuro-variational inversion called SOM-NV. It is an evolution of NeuroVaria that is a combination of a variational inversion and multilayer perceptrons, multilayer perceptrons (MLPs). This work also enables validation of the optical thickness retrieved by SOM-NV with AOT in situ measurements collected at AErosol RObotic NETwork (AERONET) stations.
format Book Part
genre Aerosol Robotic Network
genre_facet Aerosol Robotic Network
id ftopenresearchl:oai:biblioboard.com:bcebe3ef-e155-4e54-a0c3-f6e2e54ef684
institution Open Polar
language English
op_collection_id ftopenresearchl
op_doi https://doi.org/10.5772/65874
op_relation https://openresearchlibrary.org/viewer/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684
https://openresearchlibrary.org/ext/api/media/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684/assets/external_content.pdf
ISBN:9789535128434
doi:10.5772/65874
op_rights https://creativecommons.org/licenses/by/4.0/legalcode
op_rightsnorm CC-BY
op_source MODID-6d55e02e354:IntechOpen
publishDate 2016
publisher IntechOpen
record_format openpolar
spelling ftopenresearchl:oai:biblioboard.com:bcebe3ef-e155-4e54-a0c3-f6e2e54ef684 2025-01-16T18:38:16+00:00 Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast Diouf, Daouda 2016-01-01T00:00:00Z application/pdf https://openresearchlibrary.org/viewer/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684 https://openresearchlibrary.org/ext/api/media/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684/assets/external_content.pdf https://doi.org/10.5772/65874 English eng IntechOpen https://openresearchlibrary.org/viewer/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684 https://openresearchlibrary.org/ext/api/media/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684/assets/external_content.pdf ISBN:9789535128434 doi:10.5772/65874 https://creativecommons.org/licenses/by/4.0/legalcode CC-BY MODID-6d55e02e354:IntechOpen Technology & Engineering / Environmental bisacsh:TEC010000 CHAPTER 2016 ftopenresearchl https://doi.org/10.5772/65874 2021-03-17T10:30:49Z Aerosol optical thickness (AOT) was provided by SeaWiFS over oceans from October 1997 to December 2010. Weekly, monthly, and annually maps might help scientifics to better understand climate change and its impacts. Making average of several images to get these maps is not suitable on West African coast. A particularity of this area is that it is constantly traversed by desert dust. The algorithm used by SeaWiFS inverts the reflectance measurements to retrieve the aerosol optical thickness at 865 nm. For the poorly absorbing aerosol optical thickness less than 0.35, the standard algorithm works very well. On the west African coast that is often crossed by desert aerosol plumes characterized by high optical thicknesses. In this paper we study the spatial and temporal variability of aerosols on the West African coast during the period from December 1997 to November 2009 by using neural network inversion. The neural network method we used is mixed method of neuro-variational inversion called SOM-NV. It is an evolution of NeuroVaria that is a combination of a variational inversion and multilayer perceptrons, multilayer perceptrons (MLPs). This work also enables validation of the optical thickness retrieved by SOM-NV with AOT in situ measurements collected at AErosol RObotic NETwork (AERONET) stations. Book Part Aerosol Robotic Network Open Research Library
spellingShingle Technology & Engineering / Environmental
bisacsh:TEC010000
Diouf, Daouda
Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast
title Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast
title_full Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast
title_fullStr Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast
title_full_unstemmed Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast
title_short Spatial Distribution of Aerosol Optical Thickness Retrieved from SeaWiFS Images by a Neural Network Inversion over the West African Coast
title_sort spatial distribution of aerosol optical thickness retrieved from seawifs images by a neural network inversion over the west african coast
topic Technology & Engineering / Environmental
bisacsh:TEC010000
topic_facet Technology & Engineering / Environmental
bisacsh:TEC010000
url https://openresearchlibrary.org/viewer/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684
https://openresearchlibrary.org/ext/api/media/bcebe3ef-e155-4e54-a0c3-f6e2e54ef684/assets/external_content.pdf
https://doi.org/10.5772/65874