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COMPARATIVE ANALYSIS OF THE PROCESS OF CREATING A 3D MODEL OF ARCHITECTURE OBJECT WITH USING LASER SCANNING AND STRUCTURE FROM MOTION TECHNOLOGIES

Mitka, inz. Bartosz, Pluta, inz. Magda

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b22/s10.108View metrics

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Publication details

Title
COMPARATIVE ANALYSIS OF THE PROCESS OF CREATING A 3D MODEL OF ARCHITECTURE OBJECT WITH USING LASER SCANNING AND STRUCTURE FROM MOTION TECHNOLOGIES
Authors
Mitka, inz. Bartosz, Pluta, inz. Magda
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
847-854
ISSN
1314-2704
ISBN
978-619-7105-59-9
Language
en
Publication type
Conference Paper
References24
  1. Pluta M., Mitka B., Możliwości modelowania 3D na podstawie danych ze skaningu laserowego, Episteme Czasopismo Kulturalno – Naukowe, 22/2014 t. II, s. 137-146, 2014.

  2. Martínez J., Soria -Medina A., Arias P., Buffara-Antunes F., Automatic processing of Terrestrial Laser Scanning data of building façades, Automation in Construction, 22, 2012.

  3. Ait el Kadi K., Tahiri D., Simonetto E., Sebari I., Boulaassal K., Automatic Extraction of Facade Details of Heritage Building Using Terrestrial Laser Scanning Data, Architectural Engineering Technology, t. 3, 2014.

  4. Pu S., Generting building outlines from terrestrial laser scanning, The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. - Beijing, Part B5, t. XXXVII, 2008.

  5. Alba M., Scaioni M., Comparison of techniques for terrestrial laser scanning data georeferencing applied to 3-d modelling of cultural heritage, ISPRS proceedings XXXVI, W47, 2007.

  6. Kraszewski B., Wykorzystanie naziemnego skaningu laserowego do inwentaryzacji pomieszczeń biurowych, Archiwum Fotogrametrii, Kartografii i Teledetekcji, 23, 2012.

  7. Maciaszek J., Skanowanie laserowe jako nowa technologia inwentaryzacji i wizualizacji zabytkowych komór solnych, Gospodarka Surowcami Mineralnymi, t.24 zeszyt 3/2, 2008

  8. Reu J., Plets G., Verhoeven G., Smedt P., Bats M., Cherretté B., Maeyer W., Deconynck J., Herremans D., Laloo P., Meirvenne M., Clercq W., Towards a three- dimensional cost-effective registration of the archaeological heritage, Journal of Archeological Science, 40, s. 1108 – 1121, 2013.

  9. Westoby M.J., Brasington J., Glasser N.F., Hambrey M.J., Reynolds J.M., ‘Structure-from-Motion’ photogrammetry: A low -cost, effective tool for geoscienc e applications, Geomorphology, 179, s. 300-314, 2012

  10. Litwin U., Piech I., Application of the photogrammetric method in surveying of the palace and park complex building in Mściwojów, Poland, Geomatics, Landmanagement and Landscape, No. 2, s. 37 – 44, 2013.

  11. Cosarca C., Jocea A., Savu A., Analysis of error source in Terrestrial Laser Scanning, RevCAD, Editura Aeternitas Alba Iulia, 9, 2008.

  12. Koutsoudisa A., Vidmar B., Ioannakis G., Arnaoutoglou F., Pavlidis G., Chamzas Ch., Multi-image 3D reconstruction data evaluation, Journal of Cultural Heritage, 15, s. – 79, 2014. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  13. Pluta M., Mitka B., Możliwości modelowania 3D na podstawie danych ze skaningu laserowego, Episteme Czasopismo Kulturalno – Naukowe, 22/2014 t. II, s. 137-146, 2014.

  14. Martínez J., Soria -Medina A., Arias P., Buffara-Antunes F., Automatic processing of Terrestrial Laser Scanning data of building façades, Automation in Construction, 22, 2012.

  15. Ait el Kadi K., Tahiri D., Simonetto E., Sebari I., Boulaassal K., Automatic Extraction of Facade Details of Heritage Building Using Terrestrial Laser Scanning Data, Architectural Engineering Technology, t. 3, 2014.

  16. Pu S., Generting building outlines from terrestrial laser scanning, The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences. - Beijing, Part B5, t. XXXVII, 2008.

  17. Alba M., Scaioni M., Comparison of techniques for terrestrial laser scanning data georeferencing applied to 3-d modelling of cultural heritage, ISPRS proceedings XXXVI, W47, 2007.

  18. Kraszewski B., Wykorzystanie naziemnego skaningu laserowego do inwentaryzacji pomieszczeń biurowych, Archiwum Fotogrametrii, Kartografii i Teledetekcji, 23, 2012.

  19. Maciaszek J., Skanowanie laserowe jako nowa technologia inwentaryzacji i wizualizacji zabytkowych komór solnych, Gospodarka Surowcami Mineralnymi, t.24 zeszyt 3/2, 2008

  20. Reu J., Plets G., Verhoeven G., Smedt P., Bats M., Cherretté B., Maeyer W., Deconynck J., Herremans D., Laloo P., Meirvenne M., Clercq W., Towards a three- dimensional cost-effective registration of the archaeological heritage, Journal of Archeological Science, 40, s. 1108 – 1121, 2013.

  21. Westoby M.J., Brasington J., Glasser N.F., Hambrey M.J., Reynolds J.M., ‘Structure-from-Motion’ photogrammetry: A low -cost, effective tool for geoscienc e applications, Geomorphology, 179, s. 300-314, 2012

  22. Litwin U., Piech I., Application of the photogrammetric method in surveying of the palace and park complex building in Mściwojów, Poland, Geomatics, Landmanagement and Landscape, No. 2, s. 37 – 44, 2013.

  23. Cosarca C., Jocea A., Savu A., Analysis of error source in Terrestrial Laser Scanning, RevCAD, Editura Aeternitas Alba Iulia, 9, 2008.

  24. Koutsoudisa A., Vidmar B., Ioannakis G., Arnaoutoglou F., Pavlidis G., Chamzas Ch., Multi-image 3D reconstruction data evaluation, Journal of Cultural Heritage, 15, s. – 79, 2014. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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Number of times cited according to Crossref: 1

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