Airborne Laserscanning (German Wikipedia)

Analysis of information sources in references of the Wikipedia article "Airborne Laserscanning" in German language version.

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doi.org

  • Bernhard Höfle, Martin Rutzinger: Topographic airborne LiDAR in geomorphology: A technological perspective. In: Zeitschrift für Geomorphologie. Bd. 55, Supplement Nr. 2, 2011, ISSN 1864-1687, S. 1–29, doi:10.1127/0372-8854/2011/0055S2-0043.
  • Aloysius Wehr, Uwe Lohr: Airborne laser scanning – an introduction and overview. In: ISPRS Journal of Photogrammetry and Remote Sensing. Bd. 54, Nr. 2/3, 1999, ISSN 0924-2716, S. 68–82, doi:10.1016/S0924-2716(99)00011-8.
  • Friedrich Ackermann: Airborne laser scanning – present status and future expectations. In: ISPRS Journal of Photogrammetry and Remote Sensing. Bd. 54, Nr. 2/3, 1999, S. 64–67, doi:10.1016/S0924-2716(99)00009-X.
  • Emmanuel P. Baltsavias: Airborne laser scanning: existing systems and firms and other resources. In: ISPRS Journal of Photogrammetry and Remote Sensing. Bd. 54, Nr. 2/3, 1999, S. 164–198, doi:10.1016/S0924-2716(99)00016-7.
  • Michel Jaboyedoff, Thierry Oppikofer, Antonio Abellán, Marc-Henri Derron, Alex Loye, Richard Metzger, Andrea Pedrazzini: Use of LIDAR in landslide investigations: a review. In: Fausto Guzzetti, Giulio Iovine, Mario Parise, Paola Reichenbach (Hrsg.): Landslides: Forecasting, Hazard Evaluation and Risk Mitigation (= Natural Hazards. Bd. 61, Nr. 1, ISSN 0921-030X). Springer, Dordrecht u. a. 2012, S. 5–28, doi:10.1007/s11069-010-9634-2.
  • Peter Axelsson: Processing of laser scanner data – algorithms and applications. In: ISPRS Journal of Photogrammetry and Remote Sensing. Bd. 54, Nr. 2/3, 1999, S. 138–147, doi:10.1016/S0924-2716(99)00008-8.
  • Alexander Prokop, Helmut Panholzer: Assessing the capability of terrestrial laser scanning for monitoring of slow moving landslides. In: Natural Hazards and Earth System Sciences. Bd. 9, Nr. 6, 2009, ISSN 2195-9269, S. 1921–1928, doi:10.5194/nhess-9-1921-2009.
  • Francesco Pirotti, Alberto Guarnieri, Antonio Vettore: Ground filtering and vegetation mapping using multi-return terrestrial laser scanning. In: ISPRS Journal of Photogrammetry and Remote Sensing. Bd. 76, 2013, S. 56–63, doi:10.1016/j.isprsjprs.2012.08.003.
  • ZLINSZKY A., MÜCKE W., LEHNER H., BRIESE C. & PFEIFER N.: Categorizing Wetland Vegetation by Airborne Laser Scanning on Lake Balaton and Kis-Balaton, Hungary. In: Remote Sensing. Nr. 4, 2012, doi:10.3390/rs4061617.
  • ZLINSZKY A., SCHROIFF A., KANIA A., DEÁK B., MÜCKE W., VÁRI Á., SZÉKELY B. & PFEIFER N.: Categorizing Grassland Vegetation with Full-Waveform Airborne Laser Scanning: A Feasibility Study for Detecting Natura 2000 Habitat Types. In: Remote Sensing. Nr. 6, 2014, doi:10.3390/rs6098056.
  • A. Jochem, B. Höfle & M. Rutzinger: Extraction of VerticalWalls from Mobile Laser Scanning Data for Solar Potential Assessment. In: MDPI (Hrsg.): Remote Sensing. Nr. 3, 2011, doi:10.3390/rs3040650.
  • NGUYEN H., PEARCE J., HARRAP R. & BARBER G.: The Application of LiDAR to Assessment of Rooftop Solar Photovoltaic Deployment Potential in a Municipal District Unit. In: MDPI (Hrsg.): Sensors. Nr. 12, 2012, doi:10.3390/s120404534.
  • P. Rauchlatner & W. Höppl: Anforderungen an die Fernerkundung und die Abflussmodellierung aus Sicht der wasserwirtschaftlichen Planung. In: Österreichische Wasser- und Abfallwirtschaft. Band 61, Nr. 7, 2009, doi:10.1007/s00506-009-0098-0.
  • G. Mandlburger, B. Höfle, C. Brieske, C. Ressl, J. Otepkta, M. Hollaus & N. Pfeiffer: Topographische Daten aus Laserscanning als Grundlage für Hydrologie und Wasserwirtschaft. In: Österreichische Wasser- und Abfallwirtschaft. Band 61, Nr. 7, 2009, doi:10.1007/s00506-009-0095-3.
  • STEINBACHER F., BODMER T. & BARAN R.: Gewässervermessung aus der Luft – Tiefenschärfe am Bodensee und die neuen Möglichkeiten der ökologischen Bewertung von Gewässern. In: Österreichische Wasser- und Abfallwirtschaft. Band 67, Nr. 11, 2015, doi:10.1007/s00506-015-0274-3.
  • B. Höfle & M. Rutzinger: Topographic airborne LiDAR in geomorphology. A technological perspective. In: Zeitschrift für Geomorphologie. Band 55, Nr. 2, 2011, doi:10.1127/0372-8854/2011/0055-0031.
  • JOERG P.C., MORSDORF F. & ZEMP M.: Uncertainty assessment of multi-temporal airborne laser scanning data: A case study on an Alpine glacier. In: Remote Sensing of Environment. Band 127, 2012, doi:10.1016/j.rse.2012.08.012.
  • DOBLE M., SKOURUP H., WADHAMS P. & GEIGER C.: The relation between Arctic sea ice surface elevation and draft: A case study using coincident AUV sonar and airborne scanning laser. In: Journal of Geophysical Research: Oceans. Band 116, C8, 2011, doi:10.1029/2011JC007076.
  • FRENCH J.R. & BURNINGHAM H.: Coastal geomorphology: trends and challenges. In: Progress in Physical Geography. Band 33, Nr. 1, 2009, doi:10.1177/0309133309105036.
  • JULGE K., GRUNO A., ELLMANN A., LIIBUSK A. & AJA T.: Exploring sea surface heights by using airborne laser scanning. In: IEEE/OES Baltic International Symposium. Nr. 1-7, 2014, doi:10.1109/BALTIC.2014.6887853.
  • EL KHALILI A., RACLOT D., HABAEIB H. & LAMACHERE J.M.: Factors and processes of permanent gully evolution in a Mediterranean marly environment (Cape Bon, Tunisia). In: Hydrological Sciences Journal. Band 58, Nr. 7, 2013, doi:10.1080/02626667.2013.824086.
  • KOBA M., BERTONCELJ I., PIROTTI F. & KUTNAR L.: Lidar processing for defining sinkhole characteristics under dense forest cover: A case study in the dinaric mountains. In: International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. Band 40, Nr. 7, 2014, doi:10.5194/isprsarchives-XL-7-113-2014.
  • BAUER C.: Analysis of dolines using multiple methods applied to airborne laser scanning data. In: Geomorphology. Band 250, 2015, doi:10.1016/j.geomorph.2015.08.015.
  • PETSCHKO H., BELL R. & GLADE, T.: Effectiveness of visually analyzing LiDAR DTM derivatives for earth and debris slide inventory mapping for statistical susceptibility modeling. In: Landslides. Band 13, Nr. 5, 2015, S. 857–872, doi:10.1007/s10346-015-0622-1.
  • HECKMANN T., BIMBÖSE M., KRAUTBLATTER M., HAAS F., BECHT M. & MORCHE D.: From geotechnical analysis to quantification and modelling using LiDAR data: a study on rockfall in the Reintal catchment, Bavarian Alps, Germany. In: Earth Surface Processes and Landforms. Band 37, Nr. 1, 2012, doi:10.1002/esp.2250.
  • WASKLEWICZ T., MIHIR M. & WHITWORTH J: Surface Variability of Alluvial Fans Generated by Disparate Processes, Eastern Death Valley, CA. In: The Professional Geographer. Band 60, Nr. 2, 2008, doi:10.1080/00330120701836162.
  • BANGEN S. G., WHEATON J. M., BOUWES N., BOUWES B. & JORDAN C.: A methodological intercomparison of topographic survey techniques for characterizing wadeable streams and rivers. In: Geomorphology. Band 206, 2014, doi:10.1016/j.geomorph.2013.10.010.
  • HOHENTHAL J., PETTERI A., JUHA H. & HANNU H.: Laser scanning applications in fluvial studies. In: Progress in Physical Geography. Band 35, Nr. 6, 2011, doi:10.1177/0309133311414605.

igkb.org

zdb-katalog.de

  • Bernhard Höfle, Martin Rutzinger: Topographic airborne LiDAR in geomorphology: A technological perspective. In: Zeitschrift für Geomorphologie. Bd. 55, Supplement Nr. 2, 2011, ISSN 1864-1687, S. 1–29, doi:10.1127/0372-8854/2011/0055S2-0043.
  • Aloysius Wehr, Uwe Lohr: Airborne laser scanning – an introduction and overview. In: ISPRS Journal of Photogrammetry and Remote Sensing. Bd. 54, Nr. 2/3, 1999, ISSN 0924-2716, S. 68–82, doi:10.1016/S0924-2716(99)00011-8.
  • Karl Kraus, Paul Dorninger: Das Laserscanning. Eine neue Datenquelle zur Erfassung der Topographie. In: Wiener Schriften zur Geographie und Kartographie. Bd. 16, 2004, ZDB-ID 1011866-4, S. 312–318.
  • Michel Jaboyedoff, Thierry Oppikofer, Antonio Abellán, Marc-Henri Derron, Alex Loye, Richard Metzger, Andrea Pedrazzini: Use of LIDAR in landslide investigations: a review. In: Fausto Guzzetti, Giulio Iovine, Mario Parise, Paola Reichenbach (Hrsg.): Landslides: Forecasting, Hazard Evaluation and Risk Mitigation (= Natural Hazards. Bd. 61, Nr. 1, ISSN 0921-030X). Springer, Dordrecht u. a. 2012, S. 5–28, doi:10.1007/s11069-010-9634-2.
  • Alexander Prokop, Helmut Panholzer: Assessing the capability of terrestrial laser scanning for monitoring of slow moving landslides. In: Natural Hazards and Earth System Sciences. Bd. 9, Nr. 6, 2009, ISSN 2195-9269, S. 1921–1928, doi:10.5194/nhess-9-1921-2009.