A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability
Nearly ¾ of the world's mega cities are by the sea and almost 80% of the global population live within 100km from the coast. These numbers make very clear that coastal regions worldwide are not only socially important but also economically critical with e.g. harbours, fish farms and exploitatio...
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ftdlr:oai:elib.dlr.de:127194 2024-05-19T07:48:24+00:00 A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability Jacobsen, Sven Singha, Suman Li, Xiaoming Velotto, Domenico Zeng, Kan 2019-06 https://elib.dlr.de/127194/ http://dragon4.esa.int/2019-symp/ unknown Jacobsen, Sven und Singha, Suman und Li, Xiaoming und Velotto, Domenico und Zeng, Kan (2019) A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability. 2019 Dragon 4 Results Symposium, 2019-06-24 - 2019-06-28, Ljubljana, Slovenia. SAR-Signalverarbeitung Konferenzbeitrag NonPeerReviewed 2019 ftdlr 2024-04-25T00:50:07Z Nearly ¾ of the world's mega cities are by the sea and almost 80% of the global population live within 100km from the coast. These numbers make very clear that coastal regions worldwide are not only socially important but also economically critical with e.g. harbours, fish farms and exploitation sites for natural resources (oil/gas rigs or offshore wind farms). Moreover the seaside is important for recreational activities and as a natural habitat for local marine life. With respect to the extreme importance of the coastline, constant monitoring of this region is compulsory. Just like the diversity of perspectives in the coastal areas, the diversity of maritime information is complex. Many parameters and layers of information are needed to obtain a comprehensive picture for a given application. Driven by the self-evident advantages of Earth observation methods to monitor large areas while keeping costs at a reasonable level, numerous methods have been developed and improved by the Chinese and German Dragon partners to extract maritime information from satellite-based sensors and will be outlined in the presentation. While most of the information is only available separately, the combination of different information layers is needed to generate a holistic maritime situation awareness. For this an integrated platform is needed to simultaneously visualize and generate a synopsis of different types of information, selected according to the respective application. We present a prototype of a web-based near-real-time information platform to combine information such as sea state, wind information, AIS messages, SAR-based ship detections and sea ice information to obtain a thorough maritime situation awareness. The system can be expanded for oil spill detection and other relevant information and can thus serve as a powerful decision support system for national or international authorities e.g. in catastrophy or disaster management. The platform can help uncover exceptional conditions or behavior and represents an ... Conference Object Sea ice German Aerospace Center: elib - DLR electronic library |
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German Aerospace Center: elib - DLR electronic library |
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SAR-Signalverarbeitung |
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SAR-Signalverarbeitung Jacobsen, Sven Singha, Suman Li, Xiaoming Velotto, Domenico Zeng, Kan A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability |
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SAR-Signalverarbeitung |
description |
Nearly ¾ of the world's mega cities are by the sea and almost 80% of the global population live within 100km from the coast. These numbers make very clear that coastal regions worldwide are not only socially important but also economically critical with e.g. harbours, fish farms and exploitation sites for natural resources (oil/gas rigs or offshore wind farms). Moreover the seaside is important for recreational activities and as a natural habitat for local marine life. With respect to the extreme importance of the coastline, constant monitoring of this region is compulsory. Just like the diversity of perspectives in the coastal areas, the diversity of maritime information is complex. Many parameters and layers of information are needed to obtain a comprehensive picture for a given application. Driven by the self-evident advantages of Earth observation methods to monitor large areas while keeping costs at a reasonable level, numerous methods have been developed and improved by the Chinese and German Dragon partners to extract maritime information from satellite-based sensors and will be outlined in the presentation. While most of the information is only available separately, the combination of different information layers is needed to generate a holistic maritime situation awareness. For this an integrated platform is needed to simultaneously visualize and generate a synopsis of different types of information, selected according to the respective application. We present a prototype of a web-based near-real-time information platform to combine information such as sea state, wind information, AIS messages, SAR-based ship detections and sea ice information to obtain a thorough maritime situation awareness. The system can be expanded for oil spill detection and other relevant information and can thus serve as a powerful decision support system for national or international authorities e.g. in catastrophy or disaster management. The platform can help uncover exceptional conditions or behavior and represents an ... |
format |
Conference Object |
author |
Jacobsen, Sven Singha, Suman Li, Xiaoming Velotto, Domenico Zeng, Kan |
author_facet |
Jacobsen, Sven Singha, Suman Li, Xiaoming Velotto, Domenico Zeng, Kan |
author_sort |
Jacobsen, Sven |
title |
A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability |
title_short |
A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability |
title_full |
A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability |
title_fullStr |
A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability |
title_full_unstemmed |
A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability |
title_sort |
coastal monitoring system based on satellite observation for ocean and coast sustainability |
publishDate |
2019 |
url |
https://elib.dlr.de/127194/ http://dragon4.esa.int/2019-symp/ |
genre |
Sea ice |
genre_facet |
Sea ice |
op_relation |
Jacobsen, Sven und Singha, Suman und Li, Xiaoming und Velotto, Domenico und Zeng, Kan (2019) A Coastal Monitoring System Based on Satellite Observation for Ocean and Coast Sustainability. 2019 Dragon 4 Results Symposium, 2019-06-24 - 2019-06-28, Ljubljana, Slovenia. |
_version_ |
1799466635530076160 |