Digital Elevation Models (DEMs) play a key role in hydrological risk prevention and mitigation: hydraulic numeric simulations, slope and aspect maps all heavily rely on DEMs. Hydraulic numeric simulations require the used DEM to have a defined accuracy, in order to obtain reliable results. Are the DEM accuracy figures clearly and uniquely defined? The paper focuses on some issues concerning DEM accuracy definition and assessment. Two DEM accuracy definitions can be found in literature: accuracy at the interpolated point and accuracy at the nodes. The former can be estimated by means of randomly distributed check points, while the latter by means of check points coincident with the nodes. The two considered accuracy figures are often treated as equivalent, but they aren't. Given the same DEM, assessing it through one or the other approach gives different results. Our paper performs an indepth characterization of the two figures and proposes standardization coefficients.

On the standardization of vertical accuracy figures in DEMs

CASELLA, VITTORIO;PADOVA, BARBARA
2013-01-01

Abstract

Digital Elevation Models (DEMs) play a key role in hydrological risk prevention and mitigation: hydraulic numeric simulations, slope and aspect maps all heavily rely on DEMs. Hydraulic numeric simulations require the used DEM to have a defined accuracy, in order to obtain reliable results. Are the DEM accuracy figures clearly and uniquely defined? The paper focuses on some issues concerning DEM accuracy definition and assessment. Two DEM accuracy definitions can be found in literature: accuracy at the interpolated point and accuracy at the nodes. The former can be estimated by means of randomly distributed check points, while the latter by means of check points coincident with the nodes. The two considered accuracy figures are often treated as equivalent, but they aren't. Given the same DEM, assessing it through one or the other approach gives different results. Our paper performs an indepth characterization of the two figures and proposes standardization coefficients.
2013
The Role of Geomatics in Hydrogeological Risk
Pirotti F., Guarnieri A., Vettore A.
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
contributo
International Workshop "The Role of Geomatics in Hydrogeological Risk"
27-28 February 2013
Padova
Internazionale
ELETTRONICO
XL-5/W3, 2013
73
77
5
Copernicus publications
Accuracy; DEM; DTM; Standardization
http://www.int-arch-photogramm-remote-sens-spatial-inf-sci.net/XL-5-W3/73/2013/isprsarchives-XL-5-W3-73-2013.html
none
Casella, Vittorio; Padova, Barbara
273
info:eu-repo/semantics/conferenceObject
2
4 Contributo in Atti di Convegno (Proceeding)::4.1 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/688419
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