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CORDIS

Copernicus Evolution – Research for Transitional-water Observation

Resultado final

D9.2 Exploitation Plan Document v.1.0

D92Exploitation Plan Document v10

D8.2 Demonstration Case Study report

D82Demonstration Case Study report

D3.2 Gap analysis of standards and procedures

Gap analysis of standards and procedures and recommendations to IOCCG for biooptical data acquisition

Content and user requirements for the CERTO prototype

D2.1 Content and user requirements for the CERTO prototype

Communications plan

D10.1 Communications plan

D10.5 Communications plan with overview of year 1 activities

D10.5 Communications plan with overview of year 1 activities

D6.3 Description of CERTO indicators

D63Description of CERTO indicators

D9.3 Exploitation Plan Document v.2.0

D93Exploitation Plan Document v20

D10.7 Final communications summary

D107Final communications summary with overall project activities and achievements

D6.1 Analysis of User Requirements for Indicator Development

D6.1 Analysis of User Requirements from WP2 for Indicator Development in WP6

D2.4 Progress report

D24 Progress report including update the CERTO user requirements document based on user feedbacks and WP recommendations

D3.3 In situ sampling plan for years 2 and 3

D33In situ sampling plan for years 2 and 3

D9.4 Recommendations for new spaceborne instruments

D94Recommendations for new spaceborne instruments

D6.2 Progress report 6

D62Progress report on WP6

D4.1 Progress report

D4.1 Short report on WP4 progress

D2.2 Technical requirements for the CERTO prototype
D7.1 Initial report on DIAS & cloud providers

D7.1 Initial report on options for Copernicus DIAS & cloud providers

D8.1 Progress report

D81Progress report

D7.2 Solution Architecture Design Document

D7.2 Solution Architecture Design Document for the CERTO prototype based on WP2 D2.2

Risk register and process diagram
D6.4 Recommendations for the implementation of CERTO indicators

D64Recommendations for the implementation of CERTO indicators

D5.1 Initial product evaluation

D5.1 Initial evaluation of atmospheric correction performance for the transitional waters

D5.4 Final product evaluation and description of algorithms

D54Final atmospheric correction product evaluation and description of algorithms

D2.3 Progress report

D23 Progress report including update to the technical Requirements of CERTO indicators for the EU Directives based on user feedbacks

D4.2 Final spectral water class library (class set) for each sensor

D4.2Final spectral water class library (class set) for each sensor.

D4.3 Classification Python toolbox and documentation

D4.3 Classification Python toolbox and documentation (workflow) for integration into open access systems such as SNAP

D5.2 Radiative transfer simulation dataset and documentation
D7.6 Release of user support tools

D7.6Release of user support tools to work with CERTO products, e.g. access and analysis tools or integration into datacube

D7.7 Data production for WP8 Demonstration

D7.7Data production for WP8 Demonstration

D7.5 Final release of CERTO service prototype

D7.5Final release of CERTO service prototype including documentation & training materials

D7.3 First release of service prototype including documentation & training materials

D7.3First release of service prototype including documentation & training materials

D7.4 Second release of service prototype

D7.4Second release of service prototype including docs & training materials

D10.4 Overview leaflet

D10.4 Overview leaflet for general interest on CERTO

D4.5 Optimal-algorithm for products derived from hyperspectral data

D4.5Optimal-algorithm for products derived from hyperspectral data

D5.3 Update of the prototype and documentation

D5.3Update of the atmospheric correction prototype and documentation

D4.4 Optimal-algorithms

D4.4Optimal-algorithm matrix assignment per water type

D3.4 Online bio-optical data processing

D3.4Online bio-optical data processing

D10.6 Non-technical summary of case study findings

D10.6Non-technical summary of case study findings

D1.3 Updated Data Management and IP Plan

D13Updated Data Management and IP Plan

D1.4 Final Data Management and IP Plan

D14Final Data Management and IP Plan

Initial Data Management and IP Plan

D1.2 Initial Data Management and IP Plan including requirements for the ORDP

Publicaciones

Towards an Integrated Observational System to Investigate Sediment Transport in the Tidal Inlets of the Lagoon of Venice

Autores: Scarpa, G.M., Braga F., Manfe G., Lorenzetti G., Zaggia L.
Publicado en: Remote Sensing, Edición 14, 2022, ISSN 2072-4292
Editor: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/rs14143371

Derivation of uncertainty budgets for continuous above-water radiometric measurements along an Atlantic Meridional Transect

Autores: J. Lin, G. Dall'Olmo, G. H. Tilstone, R. J.W. Brewin, V. Vabson, I. Ansko, H. Evers-King, T. Casal, C. Donlon
Publicado en: Optics Express, Edición 30(25), 2022, Página(s) 45648-45675, ISSN 1094-4087
Editor: Optical Society of America
DOI: 10.1364/oe.470994

MOVING TOWARDS GLOBAL SATELLITE BASED PRODUCTS FOR MONITORING OF INLAND AND COASTAL WATERS. REGIONAL EXAMPLES FROM EUROPE AND SOUTH AMERICA

Autores: E. Spyrakos, P. Hunter, S. Simis, C. Neil, C. Riddick, S. Wang, A. Varley, M. Blake, S. Groom, J. Torres Palenzuela, L. Vilas Gonzalez, C. Cardenas, M. Frangopulos, X. Aguilar Vega, J. L. Iriarte, A. Tyler
Publicado en: ISPRS Annals of Photogrammetry, Remote Sensing and Spatial Information Sciences, Edición IV-3/W2-2020, 2020, Página(s) 101-106, ISSN 2194-9050
Editor: ISPRS
DOI: 10.5194/isprs-annals-iv-3-w2-2020-101-2020

In situ correlation between microplastic and suspended particulate matter concentrations in river-estuary systems support proxies for satellite-derived estimates of microplastic flux

Autores: Emma Sullivan*, Matthew Cole, Elizabeth C. Atwood, Penelope K. Lindeque, Pham Thi Chin, Victor Martinez-Vicente
Publicado en: Marine Pollution Bulletin, Edición 196, 2023, ISSN 0025-326X
Editor: Pergamon Press Ltd.
DOI: 10.1016/j.marpolbul.2023.115529

Revised spectral optimization approach to remove surface-reflected radiance for the estimation of remote-sensing reflectance from the above-water method.

Autores: Junfang Lin, Zhongping Lee, Gavin H. Tilstone, Xiaohan Liu, Jianwei Wei, Michael Ondrusek, and Steve Groom
Publicado en: Optics Express, 2023, ISSN 1094-4087
Editor: Optical Society of America
DOI: 10.1364/oe.486981

Deriving Water Quality Parameters Using Sentinel-2 Imagery: A Case Study in the Sado Estuary, Portugal

Autores: Giulia Sent, Beatriz Biguino, Luciane Favareto, Joana Cruz, Carolina Sa, Ana Ines Dogliotti, Carla Palma, Vanda Brotas, Ana C. Brito
Publicado en: Remote Sensing, Edición 13(5), 2021, ISSN 2072-4292
Editor: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/rs13051043

COVID-19 lockdown effects on a coastal marine environment: Disentangling perception versus reality

Autores: F. Braga, D. Ciani, S. Colella, E. Organelli, J. Pitarch, V. E. Brando, M. Bresciani, J. A. Concha, C. Giardino, G. M. Scarpa, G. Volpe, M-H Rio, F. Falcini
Publicado en: Science of The Total Environment, Edición 817, 2022, ISSN 0048-9697
Editor: Elsevier BV
DOI: 10.1016/j.scitotenv.2022.153002

Assessment of PRISMA water reflectance using autonomous hyperspectral radiometry

Autores: Braga F., Fabbretto A., Vanhellemont Q., Bresciani M., Giardino C., Scarpa G.M., Manfe G., Concha J.A., Brando V.E.
Publicado en: ISPRS Journal of Photogrammetry and Remote Sensing, Edición 192, 2022, Página(s) 99-114, ISSN 0924-2716
Editor: Elsevier BV
DOI: 10.1016/j.isprsjprs.2022.08.009

Estimating the concentration of total suspended solids in inland and coastal waters from Sentinel-2 MSI: A semi-analytical approach.

Autores: Dalin Jiang a, Bunkei Matsushita, Nima Pahlevan, Daniela Gurlin, C ́edric G. Fichot, Joshua Harringmeyer, Giulia Sent, Ana C. Brito, Vanda Brotas, Mortimer Werther, Veloisa Mascarenhas, Matthew Blake, Peter Hunter, Andrew Tyler, Evangelos Spyrakos
Publicado en: ISPRS Journal of Photogrammetry and Remote Sensing, 2023, ISSN 0924-2716
Editor: Elsevier BV
DOI: 10.1016/j.isprsjprs.2023.09.020

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