In recent years, a number of destructive earthquakes took place around the world. Earth Observation (EO) -based damage assessment was among the tools used to coordinate relief efforts; most of the published maps, however, are still based on weather-dependent optical data and visual interpretation. Only recently, methods based on radar data began to emerge, although not yet consolidated. In this paper we elaborate on a method for damage assessment on urban areas set up on the occasion of the 2008 Sichuan event and tuned on the 2009 L’Aquila earthquake; direct investigation of the 2010 Haiti earthquake, providing an even larger statistical base thanks to the extent of the Port-au-Prince urban area, allowed pinpointing some characteristic behaviours, potentially useful to improve damage assessment results. In particular, we note how results changed thanks to a more reliable and accurate revision of ground truth data and outline a possible start point for correction of damage over/underestimation. Quantitative results are provided.

Post-event only VHR radar satellite data for automated damage assessment: a study on COSMO/SkyMed and the 2010 Haiti earthquake

DELL'ACQUA, FABIO;POLLI, DIEGO ALDO
2011-01-01

Abstract

In recent years, a number of destructive earthquakes took place around the world. Earth Observation (EO) -based damage assessment was among the tools used to coordinate relief efforts; most of the published maps, however, are still based on weather-dependent optical data and visual interpretation. Only recently, methods based on radar data began to emerge, although not yet consolidated. In this paper we elaborate on a method for damage assessment on urban areas set up on the occasion of the 2008 Sichuan event and tuned on the 2009 L’Aquila earthquake; direct investigation of the 2010 Haiti earthquake, providing an even larger statistical base thanks to the extent of the Port-au-Prince urban area, allowed pinpointing some characteristic behaviours, potentially useful to improve damage assessment results. In particular, we note how results changed thanks to a more reliable and accurate revision of ground truth data and outline a possible start point for correction of damage over/underestimation. Quantitative results are provided.
2011
Information Systems & Communications Technology covers resources concerned with the technical aspects of information systems and information technology, including the acquisition, processing, storage, management, and dissemination of information. This category also covers the technical aspects of communications via various devices and systems.
The Earth Sciences category includes resources that deal with all aspects of geosciences, including geology, geochemistry, geophysics, mineralogy, meteorology and atmospheric sciences, hydrology, oceanography, petroleum geology, volcanology, seismology, climatology, paleontology, geography, remote sensing, and geodesy.
Esperti anonimi
Inglese
Internazionale
STAMPA
77
10
1037
1043
7
Very High Resolution; Synthetic Aperture Radar; seismic damage assessment; 2010 Haiti earthquake
http://www.ingentaconnect.com/content/asprs/pers/2011/00000077/00000010/art00004
no
2
info:eu-repo/semantics/article
262
Dell'Acqua, Fabio; Polli, DIEGO ALDO
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/254299
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