The Experts below are selected from a list of 57 Experts worldwide ranked by ideXlab platform
Mangin Antoine - One of the best experts on this subject based on the ideXlab platform.
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Banks, Andrew C., Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Hembise Fanton D’andon Odile, Lerebourg Christophe, Mangin AntoineAbstract:The European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small- to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Lerebourg Christophe, Banks Andrew, Fanton D&apos, Mangin AntoineAbstract:International audienceThe European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small-to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
Antoine David - One of the best experts on this subject based on the ideXlab platform.
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Banks, Andrew C., Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Hembise Fanton D’andon Odile, Lerebourg Christophe, Mangin AntoineAbstract:The European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small- to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Lerebourg Christophe, Banks Andrew, Fanton D&apos, Mangin AntoineAbstract:International audienceThe European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small-to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
Bruniquel Véronique - One of the best experts on this subject based on the ideXlab platform.
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Banks, Andrew C., Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Hembise Fanton D’andon Odile, Lerebourg Christophe, Mangin AntoineAbstract:The European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small- to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Lerebourg Christophe, Banks Andrew, Fanton D&apos, Mangin AntoineAbstract:International audienceThe European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small-to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
Vellucci Vincenzo - One of the best experts on this subject based on the ideXlab platform.
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Banks, Andrew C., Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Hembise Fanton D’andon Odile, Lerebourg Christophe, Mangin AntoineAbstract:The European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small- to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Lerebourg Christophe, Banks Andrew, Fanton D&apos, Mangin AntoineAbstract:International audienceThe European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small-to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
Bretagnon Marine - One of the best experts on this subject based on the ideXlab platform.
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Banks, Andrew C., Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Hembise Fanton D’andon Odile, Lerebourg Christophe, Mangin AntoineAbstract:The European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small- to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions
-
ROSACE: A Proposed European Design for the Copernicus Ocean Colour System Vicarious Calibration Infrastructure
'MDPI AG', 2020Co-Authors: Antoine David, Vellucci Vincenzo, Bardey Philippe, Bretagnon Marine, Bruniquel Véronique, Deru Alexis, Lerebourg Christophe, Banks Andrew, Fanton D&apos, Mangin AntoineAbstract:International audienceThe European Copernicus programme ensures long-term delivery of high-quality, global satellite ocean colour radiometry (OCR) observations from its Sentinel-3 (S3) satellite series carrying the ocean and land colour instrument (OLCI). In particular, the S3/OLCI provides marine water leaving reflectance and derived products to the Copernicus marine environment monitoring service, CMEMS, for which data quality is of paramount importance. This is why OCR system vicarious calibration (OC-SVC), which allows uncertainties of these products to stay within required specifications, is crucial. The European organisation for the exploitation of meteorological satellites (EUMETSAT) operates the S3/OLCI marine ground segment, and envisions having an SVC Infrastructure deployed and operated for the long-term. This paper describes a design for such an SVC Infrastructure, named radiometry for ocean colour satellites calibration and community engagement (ROSACE), which has been submitted to Copernicus by a consortium made of three European research institutions, a National Metrology Institute, and two small-to medium-sized enterprises (SMEs). ROSACE proposes a 2-Site Infrastructure deployed in the Eastern and Western Mediterranean Seas, capable of delivering up to about 80 high quality matchups per year for OC-SVC of the S3/OLCI missions