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Featured researches published by Michael Vetter.


Remote Sensing | 2014

GIS-Based Roughness Derivation for Flood Simulations: A Comparison of Orthophotos, LiDAR and Crowdsourced Geodata

Helen Dorn; Michael Vetter; Bernhard Höfle

Natural disasters like floods are a worldwide phenomenon and a serious threat to mankind. Flood simulations are applications of disaster control, which are used for the development of appropriate flood protection. Adequate simulations require not only the geometry but also the roughness of the Earth’s surface, as well as the roughness of the objects hereon. Usually, the floodplain roughness is based on land use/land cover maps derived from orthophotos. This study analyses the applicability of roughness map derivation approaches for flood simulations based on different datasets: orthophotos, LiDAR data, official land use data, OpenStreetMap data and CORINE Land Cover data. Object-based image analysis is applied to orthophotos and LiDAR raster data in order to generate land cover maps, which enable a roughness parameterization. The vertical vegetation structure within the LiDAR point cloud is used to derive an additional floodplain roughness map. Further roughness maps are derived from official land use data, OpenStreetMap and CORINE Land Cover datasets. Six different flood simulations are applied based on one elevation data but with the different roughness maps. The results of the hydrodynamic–numerical models include information on flow velocity and water depth from which the additional attribute flood intensity is calculated of. The results based on roughness maps derived from LiDAR data and OpenStreetMap data are comparable, whereas the results of the other datasets differ significantly.


Earth Surface Processes and Landforms | 2009

Water surface mapping from airborne laser scanning using signal intensity and elevation data.

Bernhard Höfle; Michael Vetter; Norbert Pfeifer; Gottfried Mandlburger; Johann Stötter


Archive | 2010

CHANGE DETECTION OF BUILDING FOOTPRINTS FROM AIRBORNE LASER SCANNING ACQUIRED IN SHORT TIME INTERVALS

Martin Rutzinger; B. Rüf; Bernhard Höfle; Michael Vetter


ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences | 2012

VERTICAL VEGETATION STRUCTURE ANALYSIS AND HYDRAULIC ROUGHNESS DETERMINATION USING DENSE ALS POINT CLOUD DATA - A VOXEL BASED APPROACH

Michael Vetter; Bernhard Höfle; Markus Hollaus; Christine Gschöpf; Gottfried Mandlburger; Norbert Pfeifer; W. Wagner


Zeitschrift Fur Geomorphologie | 2011

Estimating changes of riverine landscapes and riverbeds by using airborne LIDAR data and river cross - sections

Michael Vetter; Bernhard Höfle; Gottfried Mandlburger; Martin Rutzinger


Zeitschrift für Geomorphologie, Supplementary Issues | 2011

Surface classification based on multi-temporal airborne LiDAR intensity data in high mountain environments A case study from Hintereisferner, Austria

Patrick Fritzmann; Bernhard Höfle; Michael Vetter; Rudolf Sailer; Johann Stötter; Erik Bollmann


Archive | 2011

Derivation of a countrywide river network based on Airborne Laser Scanning DEMs - results of a pilot study

Gottfried Mandlburger; Michael Vetter; Milutin Milenković; Norbert Pfeifer


Hamburger Beiträge zur Physischen Geographie und Landschaftsökologie | 2008

Digital terrain model generation from airborne laser scanning point data and the effect of grid - cell size on the simulation results of a debris flow model

Volker Wichmann; Martin Rutzinger; Michael Vetter


Österreichische Zeitschrift für Vermessung und Geoinformation | 2009

Water classification using 3D airborne laser scanning point clouds

Michael Vetter; Bernhard Höfle; Martin Rutzinger


Photogrammetrie Fernerkundung Geoinformation | 2014

Modification of High Resolution Airborne Laser Scanning DTMs for Drainage Network Delineation

Michael Vetter; Gottfried Mandlburger

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Martin Rutzinger

Austrian Academy of Sciences

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Gottfried Mandlburger

Vienna University of Technology

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Norbert Pfeifer

Vienna University of Technology

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W. Wagner

Vienna University of Technology

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Christine Gschöpf

Vienna University of Technology

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Günter Blöschl

Vienna University of Technology

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