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3D RECONSTRUCTION WITH HANDHELD STRUCTURED LIGHT SCANNER

Ph. D. Maciej Wrona

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b21/s08.070View metrics

Publication Impact Profile

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  • Citations
  • CrossRef - Citation Indexes: 3
  • Captures
  • Mendeley - Readers: 5

Publication details

Title
3D RECONSTRUCTION WITH HANDHELD STRUCTURED LIGHT SCANNER
Authors
Ph. D. Maciej Wrona
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Informatics, Geoinformatics and Remote Sensing
Publisher
Stef92 Technology
Year
2016
Pages
553-560
ISSN
1314-2704
ISBN
978-619-7105-58-2
Language
en
Publication type
Conference Paper
References26
  1. . BLIŠġAN, P. - KOVANIý,ď. Jr.: Geodetic methods for efficient spatial data collection. In: EGRSE. Vol. 19, no. 1 (2012), p. 1-12.

  2. . Dziubek A. „Skaner 3D na bazie strukturalnego oświetlenia.” Wrocław, 2009.

  3. . GIGLI, G. - CASAGLI, N.: Extraction of rock mass structural data from high resolution laser scanning products. In: Landslide Science and Practice: Spatial Analysis and Modelling. Vol, 2013, Pages 89-94

  4. . H. T. Nguyen, T. M. Fernandez-Steeger, T. Wiatr, D. Rodrigues, R. Azzam: Use of terrestrial laser scanning for engineering geological applications on volcanic rock slopes – an example from Madeira island (Portugal), Nat. Hazards Earth Syst. Sci., 11, 807– 817, 2011

  5. . Jaboyedoff, M., Thierry O.,Antonio A.,Marc-Henri D.,Alex L.,Richard, M.,Andrea P. (2010). Use of LiDAR in Landslide Investigations: A Review.Natural Hazards DOI: 10.1007/s11069-010-9634-2

  6. . K. Januszkiewicz, Szablowska-Gnab E., Dąbrowska J., Supporting tool for the investigation process by playing back appearance of the crime scene, and the course of events; poster presentation The 2nd INTERPOL-Europol Cybercrime Conference, 2014.

  7. . Xiaolan Li, Jie Feng, Hongbin Zha: 3D modeling of Geological Fosils and Ores by combining high-resolution textures with 3d scanning data; Natural Laboratory on Machine Perception, Peking University, 2010.

  8. . Mantis Vision Ltd. F5 3D Imaging System User Manual. .

  9. . Płatek P., „Inżynieria odwrotna, pomiar i geometryczne odwzorowanie powierzchni swobodnych. Urządzenia pomiarowe i oprogramowanie do obróbki chmury punktów.” 2012.

  10. . White, P. D. and Jones, R. R.: A cost-efficient solution to true color terrestrial laser scanning, Geosphere, 4, 564 –575, DOI: 10.1130/GES00155.1, 2008

  11. . Wrona M.Close range surveying with NIR handheld scanner. INTERNATIONAL MULTIDISCIPLINARY SCIENTIFIC GEOCONFERENCES, 17-26 June, 2014, Bulgaria, 14th GeoConference on INFORMATICS, GEOINFORMATICS AND REMOTE SENSING, Conference Proceedings, Volume II, GEODESY & MINE SURVEYING, ISBN 978-619 - 7105-11-7/ISSN 1314-2704, DOI: 10.5593/SGEM2014/B22/S9.016, pp. 121-127

  12. . Wrona M. Using optical NIR handheld scanner for close range 3d mapping. 9th International Conference “Environmental Engineering”, 22–23 May 2014, Vilnius, Lithuania, SELECTED PAPERS, eISSN 2029-7092 / eISBN 978- 609-457-640-9, DOI: 10.3846/enviro.2014.253

  13. . Wrona M., Piotrwska W., Nowe metody skanowania 3d na potrzeby inwentaryzacji geometrycznej pojazdów, Technika Transportu Szynowego, 2015 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  14. . BLIŠġAN, P. - KOVANIý,ď. Jr.: Geodetic methods for efficient spatial data collection. In: EGRSE. Vol. 19, no. 1 (2012), p. 1-12.

  15. . Dziubek A. „Skaner 3D na bazie strukturalnego oświetlenia.” Wrocław, 2009.

  16. . GIGLI, G. - CASAGLI, N.: Extraction of rock mass structural data from high resolution laser scanning products. In: Landslide Science and Practice: Spatial Analysis and Modelling. Vol, 2013, Pages 89-94

  17. . H. T. Nguyen, T. M. Fernandez-Steeger, T. Wiatr, D. Rodrigues, R. Azzam: Use of terrestrial laser scanning for engineering geological applications on volcanic rock slopes – an example from Madeira island (Portugal), Nat. Hazards Earth Syst. Sci., 11, 807– 817, 2011

  18. . Jaboyedoff, M., Thierry O.,Antonio A.,Marc-Henri D.,Alex L.,Richard, M.,Andrea P. (2010). Use of LiDAR in Landslide Investigations: A Review.Natural Hazards DOI: 10.1007/s11069-010-9634-2

  19. . K. Januszkiewicz, Szablowska-Gnab E., Dąbrowska J., Supporting tool for the investigation process by playing back appearance of the crime scene, and the course of events; poster presentation The 2nd INTERPOL-Europol Cybercrime Conference, 2014.

  20. . Xiaolan Li, Jie Feng, Hongbin Zha: 3D modeling of Geological Fosils and Ores by combining high-resolution textures with 3d scanning data; Natural Laboratory on Machine Perception, Peking University, 2010.

  21. . Mantis Vision Ltd. F5 3D Imaging System User Manual. .

  22. . Płatek P., „Inżynieria odwrotna, pomiar i geometryczne odwzorowanie powierzchni swobodnych. Urządzenia pomiarowe i oprogramowanie do obróbki chmury punktów.” 2012.

  23. . White, P. D. and Jones, R. R.: A cost-efficient solution to true color terrestrial laser scanning, Geosphere, 4, 564 –575, DOI: 10.1130/GES00155.1, 2008

  24. . Wrona M.Close range surveying with NIR handheld scanner. INTERNATIONAL MULTIDISCIPLINARY SCIENTIFIC GEOCONFERENCES, 17-26 June, 2014, Bulgaria, 14th GeoConference on INFORMATICS, GEOINFORMATICS AND REMOTE SENSING, Conference Proceedings, Volume II, GEODESY & MINE SURVEYING, ISBN 978-619 - 7105-11-7/ISSN 1314-2704, DOI: 10.5593/SGEM2014/B22/S9.016, pp. 121-127

  25. . Wrona M. Using optical NIR handheld scanner for close range 3d mapping. 9th International Conference “Environmental Engineering”, 22–23 May 2014, Vilnius, Lithuania, SELECTED PAPERS, eISSN 2029-7092 / eISBN 978- 609-457-640-9, DOI: 10.3846/enviro.2014.253

  26. . Wrona M., Piotrwska W., Nowe metody skanowania 3d na potrzeby inwentaryzacji geometrycznej pojazdów, Technika Transportu Szynowego, 2015 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

Citing literature

Number of times cited according to Crossref: 3

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