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Articles

Sentinel-1-based flood mapping: a fully automated processing chain

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Pages 2990-3004 | Received 13 Oct 2015, Accepted 09 May 2016, Published online: 28 Jun 2016
 

ABSTRACT

This article presents an automated Sentinel-1-based processing chain designed for flood detection and monitoring in near-real-time (NRT). Since no user intervention is required at any stage of the flood mapping procedure, the processing chain allows deriving time-critical disaster information in less than 45 min after a new data set is available on the Sentinel Data Hub of the European Space Agency (ESA). Due to the systematic acquisition strategy and high repetition rate of Sentinel-1, the processing chain can be set up as a web-based service that regularly informs users about the current flood conditions in a given area of interest. The thematic accuracy of the thematic processor has been assessed for two test sites of a flood situation at the border between Greece and Turkey with encouraging overall accuracies between 94.0% and 96.1% and Cohen’s kappa coefficients (κ) ranging from 0.879 to 0.910. The accuracy assessment, which was performed separately for the standard polarizations (VV/VH) of the interferometric wide swath (IW) mode of Sentinel-1, further indicates that under calm wind conditions, slightly higher thematic accuracies can be achieved by using VV instead of VH polarization data.

Acknowledgments

Major parts of this work have been funded by ESA in the framework of the ASAPTERRA project (Contract No.: 4000112375/14/I-NB). The authors are grateful to two anonymous reviewers for their helpful comments and suggestions.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

Major parts of this work have been funded by ESA in the framework of the ASAPTERRA project [Contract No.: 4000112375/14/I-NB].

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