Zobrazeno 1 - 10
of 48
pro vyhledávání: '"Steef Peters"'
Publikováno v:
Frontiers in Remote Sensing, Vol 2 (2022)
It is common in estuarine waters to place fixed monitoring stations, with the advantages of easy maintenance and continuous measurements. These two features make fixed monitoring stations indispensable for understanding the optical complexity of estu
Externí odkaz:
https://doaj.org/article/00442290ae294861a74b249b5090d6f9
Publikováno v:
Ecological Indicators, Vol 130, Iss , Pp 108033- (2021)
Seagrass meadows are monitored in the frame of several environmental programs worldwide, including the Water Framework Directive (WFD), to evaluate the ecological status of European coastal and transitional water bodies. The large size, spatial compl
Externí odkaz:
https://doaj.org/article/d2dfb4abdde6474b81be90d486aa2b7e
Autor:
Gary Free, Mariano Bresciani, Monica Pinardi, Claudia Giardino, Krista Alikas, Kersti Kangro, Eva-Ingrid Rõõm, Diana Vaičiūtė, Martynas Bučas, Edvinas Tiškus, Annelies Hommersom, Marnix Laanen, Steef Peters
Publikováno v:
Sensors, Vol 21, Iss 18, p 6242 (2021)
The frequency of heatwave events in Europe is increasing as a result of climate change. This can have implications for the water quality and ecological functioning of aquatic systems. We deployed three spectroradiometer WISPstations at three sites in
Externí odkaz:
https://doaj.org/article/88875c64cbda4dff86338a0fa9e92fba
Autor:
Claudia Giardino, Mariano Bresciani, Federica Braga, Alice Fabbretto, Nicola Ghirardi, Monica Pepe, Marco Gianinetto, Roberto Colombo, Sergio Cogliati, Semhar Ghebrehiwot, Marnix Laanen, Steef Peters, Thomas Schroeder, Javier A. Concha, Vittorio E. Brando
Publikováno v:
Sensors, Vol 20, Iss 16, p 4553 (2020)
This study presents a first assessment of the Top-Of-Atmosphere (TOA) radiances measured in the visible and near-infrared (VNIR) wavelengths from PRISMA (PRecursore IperSpettrale della Missione Applicativa), the new hyperspectral satellite sensor of
Externí odkaz:
https://doaj.org/article/64ca35341f3f40499efae2553ecbda4d
Autor:
Mariano Bresciani, Monica Pinardi, Gary Free, Giulia Luciani, Semhar Ghebrehiwot, Marnix Laanen, Steef Peters, Valentina Della Bella, Rosalba Padula, Claudia Giardino
Publikováno v:
Water, Vol 12, Iss 1, p 284 (2020)
Lake water quality monitoring has the potential to be improved through integrating detailed spatial information from new generation remote sensing satellites with high frequency observations from in situ optical sensors (WISPstation). We applied this
Externí odkaz:
https://doaj.org/article/4a4d504e0fdb4e22895dc3d5e01a21fc
Autor:
Steef Peters, Karen Stephenson
Publikováno v:
Toward a General Theory of Organizing-Volume 1: Introducing the Network Field Model
Toward a General Theory of Organizing-Volume 1: Introducing the Network Field Model ISBN: 9781803551418
Toward a General Theory of Organizing-Volume 1: Introducing the Network Field Model ISBN: 9781803551418
There are three volumes in this body of work. In volume one, we lay the foundation for a general theory of organizing. We propose that organizing is a continuous process of ongoing mutual or reciprocal influence between objects (e.g., human actors) i
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::5d6c26a47cc071ae105b4275a28ffe47
https://mts.intechopen.com/articles/show/title/toward-a-general-theory-of-organizing-volume-1-introducing-the-network-field-model
https://mts.intechopen.com/articles/show/title/toward-a-general-theory-of-organizing-volume-1-introducing-the-network-field-model
Autor:
Diana Vaičiūtė, Marnix Laanen, Annelies Hommersom, Gary Free, Krista Alikas, Claudia Giardino, Kersti Kangro, Monica Pinardi, Steef Peters, Eva-Ingrid Rõõm, Mariano Bresciani, Edvinas Tiškus, Martynas Bučas
Publikováno v:
Sensors
Volume 21
Issue 18
Sensors (Basel, Switzerland)
Sensors, Basel : MDPI, 2021, vol. 21, iss. 18, art. no. 6242, p. 1-19
Sensors, Vol 21, Iss 6242, p 6242 (2021)
Sensors (Basel) 21 (2021). doi:10.3390/s21186242
info:cnr-pdr/source/autori:Free, Gary*; Bresciani, Mariano*; Pinardi, Monica*; Giardino, Claudia*; Alikas, Krista**; Kangro, Kersti**; Rõõm, Eva Ingrid**; Vaiciute, Diana***; Bucas, Martynas***; Ti?kus, Edvinas***; Hommersom, Annelies****; Laanen, Marnix****; Peters, Steef****/titolo:Detecting climate driven changes in chlorophyll-a using high frequency monitoring: The impact of the 2019 european heatwave in three contrasting aquatic systems/doi:10.3390%2Fs21186242/rivista:Sensors (Basel)/anno:2021/pagina_da:/pagina_a:/intervallo_pagine:/volume:21
Volume 21
Issue 18
Sensors (Basel, Switzerland)
Sensors, Basel : MDPI, 2021, vol. 21, iss. 18, art. no. 6242, p. 1-19
Sensors, Vol 21, Iss 6242, p 6242 (2021)
Sensors (Basel) 21 (2021). doi:10.3390/s21186242
info:cnr-pdr/source/autori:Free, Gary*; Bresciani, Mariano*; Pinardi, Monica*; Giardino, Claudia*; Alikas, Krista**; Kangro, Kersti**; Rõõm, Eva Ingrid**; Vaiciute, Diana***; Bucas, Martynas***; Ti?kus, Edvinas***; Hommersom, Annelies****; Laanen, Marnix****; Peters, Steef****/titolo:Detecting climate driven changes in chlorophyll-a using high frequency monitoring: The impact of the 2019 european heatwave in three contrasting aquatic systems/doi:10.3390%2Fs21186242/rivista:Sensors (Basel)/anno:2021/pagina_da:/pagina_a:/intervallo_pagine:/volume:21
The frequency of heatwave events in Europe is increasing as a result of climate change. This can have implications for the water quality and ecological functioning of aquatic systems. We deployed three spectroradiometer WISPstations at three sites in
Draft publication
In opdracht van Rijkswaterstaat
In opdracht van Rijkswaterstaat
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::8e09da6921e91b1a6bcc0eb6a26746aa
Autor:
Peter D. Hunter, Kohei Arai, Martin Ligi, Krista Alikas, Lino Augusto Sander de Carvalho, Leif G. Olmanson, Nima Pahlevan, Claudio Clemente Faria Barbosa, Simon Bélanger, Caren Binding, François Régis Martin-Lauzer, Sindy Sterckx, Moritz K. Lehmann, Thierry Tormos, Claudia Giardino, Daniela Gurlin, Yongzhen Fan, Evangelos Spyrakos, Stefan G. H. Simis, Nathalie Reynaud, Kerstin Stelzer, Susanne Kratzer, Natascha Oppelt, François Steinmetz, Mark Warren, Yanqun Pan, Andrew N. Tyler, Joji Ishikaza, Brandon I Smith, Tristan Harmel, Quinten Vanhellemont, Mariano Bresciani, Ronghua Ma, Antoine Mangin, Steef Peters, Sundarabalan V. Balasubramanian
Publikováno v:
Remote Sensing of Environment
Remote Sensing of Environment, 2021, 258, ⟨10.1016/j.rse.2021.112366⟩
Remote Sensing of Environment, Elsevier, 2021, 258, ⟨10.1016/j.rse.2021.112366⟩
Remote Sensing of Environment, 2021, 258, ⟨10.1016/j.rse.2021.112366⟩
Remote Sensing of Environment, Elsevier, 2021, 258, ⟨10.1016/j.rse.2021.112366⟩
International audience; Atmospheric correction over inland and coastal waters is one of the major remaining challenges in aquatic remote sensing, often hindering the quantitative retrieval of biogeochemical variables and analysis of their spatial and
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a0d2893ff15242104f6dad2c95538e26
https://hal.inrae.fr/hal-03318738/file/1-s2.0-S0034425721000845-main.pdf
https://hal.inrae.fr/hal-03318738/file/1-s2.0-S0034425721000845-main.pdf
Autor:
Nima Pahlevan 1, 2, Antoine Mangin 3, Sundarabalan V. Balasubramanian 4, Brandon Smith 1, Krista Alikas 5, Kohei Arai 6, Claudio Barbosa 7, Simon Bélanger 8, Caren Binding 9, Mariano Bresciani 10, Claudia Giardino 10, Daniela Gurlin 11, Yongzhen Fan 12, Tristan Harmel 13, Peter Hunter 14, Joji Ishikaza 15, Susanne Kratzer 16, Moritz K. Lehmann 17, Martin Ligi 5, Ronghua Ma 18, Leif Olmanson 19, Natascha Oppelt 20, Yanqun Pan 8, Steef Peters 22, Nathalie Reynaud 23, Lino A. Sander de Carvalho 24, Evangelos Spyrakos 14, François Steinmetz 25, Kerstin Stelzer 26, Sindy Sterckx 27, Thierry Tormos 28, Andrew Tyler 14, Quinten Vanhellemont 29, Mark Warren 30
Publikováno v:
Remote sensing of environment (2021).
info:cnr-pdr/source/autori:Nima Pahlevan 1,2, Antoine Mangin 3, Sundarabalan V. Balasubramanian 4, Brandon Smith 1,2, Krista Alikas 5, Kohei Arai 6, Claudio Barbosa 7, Simon Bélanger 8, Caren Binding 9, Mariano Bresciani 10, Claudia Giardino 10, Daniela Gurlin 11, Yongzhen Fan 12, Tristan Harmel 13, Peter Hunter 14, Joji Ishikaza 15, Susanne Kratzer 16, Moritz K. Lehmann 17, Martin Ligi 5, Ronghua Ma 18, Leif Olmanson 19, Natascha Oppelt 20, Yanqun Pan 8,21, Steef Peters 22, Nathalie Reynaud 23, Lino A. Sander de Carvalho 24, Evangelos Spyrakos 14, François Steinmetz 25, Kerstin Stelzer 26, Sindy Sterckx 27, Thierry Tormos 28, Andrew Tyler 14, Quinten Vanhellemont 29, Mark Warren 30/titolo:ACIX-Aqua: A global assessment of atmospheric correction methods for Landsat-8 and Sentinel-2 over lakes, rivers, and coastal waters/doi:/rivista:Remote sensing of environment/anno:2021/pagina_da:/pagina_a:/intervallo_pagine:/volume
info:cnr-pdr/source/autori:Nima Pahlevan 1,2, Antoine Mangin 3, Sundarabalan V. Balasubramanian 4, Brandon Smith 1,2, Krista Alikas 5, Kohei Arai 6, Claudio Barbosa 7, Simon Bélanger 8, Caren Binding 9, Mariano Bresciani 10, Claudia Giardino 10, Daniela Gurlin 11, Yongzhen Fan 12, Tristan Harmel 13, Peter Hunter 14, Joji Ishikaza 15, Susanne Kratzer 16, Moritz K. Lehmann 17, Martin Ligi 5, Ronghua Ma 18, Leif Olmanson 19, Natascha Oppelt 20, Yanqun Pan 8,21, Steef Peters 22, Nathalie Reynaud 23, Lino A. Sander de Carvalho 24, Evangelos Spyrakos 14, François Steinmetz 25, Kerstin Stelzer 26, Sindy Sterckx 27, Thierry Tormos 28, Andrew Tyler 14, Quinten Vanhellemont 29, Mark Warren 30/titolo:ACIX-Aqua: A global assessment of atmospheric correction methods for Landsat-8 and Sentinel-2 over lakes, rivers, and coastal waters/doi:/rivista:Remote sensing of environment/anno:2021/pagina_da:/pagina_a:/intervallo_pagine:/volume
Atmospheric correction over inland and coastal waters is one of the major remaining challenges in aquatic remote sensing, often hindering the quantitative retrieval of biogeochemical variables and analysis of their spatial and temporal variability wi
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=cnr_________::14dd37537f208cb240cea532bcc3657a
https://publications.cnr.it/doc/446133
https://publications.cnr.it/doc/446133