Scholarly record
EVALUATION OF TERRESTRIAL LASER SCANNING DATA IN MEASUREMENTS OF SURFACES OF INDUSTRIAL ELEMENTS
Publication Impact Profile
Publication details
References14
Fidera A., Chapman M.A., Hong J., Terrestrial Lidar for Industrial Metrology Applications: Modelling, Enhancement and Reconstruction, International Archives of Photogrammetry and Remote Sensing, Vol. XXXV, B5, 2004, pp. 880-883, .
Theory and practice on Terrestrial Laser Scanning Training material based on practical applications, 2008, pp 110-161;
Kawashima K., Kanai S., Date H., Automatic recognition of a piping system from large-scale terrestrial laser scan data, International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Canada , Volume XXXVIII-5/W12, 2011, pp 283-288;
Markiewicz J., Zawieska D. Quality assessment of the TLS data in conservation of monuments, Proceedings of SPIE. Optics for Arts, Architecture, and Archaeology V,Germany, 2015, vol. 9527, pp. 1-10;
Mitka B., Mikołajczyk Ł, Noszczyk T., Modeling Of Industrial Facilities Based On Data From Terrestrial Laser Scanning , Infrastructure And Ecology Of Rural Areas No. 2/II/2013, 2013, pp. 5-16
Feng, H-Y, Liu, Y., Xi, F.,. Analysis of digitizing errors of a laser scanning system. Precision Engineering, Journal of the International Societies for Precision Engineering and Nanotechnology, 25, 2001, pp. 185-191.
Johansson, M.,. Explorations into the Behaviour of Three Different High-Resolution Ground-Based Laser Scanners in the Built Environment, . ISPRS Commission V, 2002. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
Fidera A., Chapman M.A., Hong J., Terrestrial Lidar for Industrial Metrology Applications: Modelling, Enhancement and Reconstruction, International Archives of Photogrammetry and Remote Sensing, Vol. XXXV, B5, 2004, pp. 880-883, .
Theory and practice on Terrestrial Laser Scanning Training material based on practical applications, 2008, pp 110-161;
Kawashima K., Kanai S., Date H., Automatic recognition of a piping system from large-scale terrestrial laser scan data, International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Canada , Volume XXXVIII-5/W12, 2011, pp 283-288;
Markiewicz J., Zawieska D. Quality assessment of the TLS data in conservation of monuments, Proceedings of SPIE. Optics for Arts, Architecture, and Archaeology V,Germany, 2015, vol. 9527, pp. 1-10;
Mitka B., Mikołajczyk Ł, Noszczyk T., Modeling Of Industrial Facilities Based On Data From Terrestrial Laser Scanning , Infrastructure And Ecology Of Rural Areas No. 2/II/2013, 2013, pp. 5-16
Feng, H-Y, Liu, Y., Xi, F.,. Analysis of digitizing errors of a laser scanning system. Precision Engineering, Journal of the International Societies for Precision Engineering and Nanotechnology, 25, 2001, pp. 185-191.
Johansson, M.,. Explorations into the Behaviour of Three Different High-Resolution Ground-Based Laser Scanners in the Built Environment, . ISPRS Commission V, 2002. 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org 16th International Multidisciplinary Scientific GeoConference SGEM 2016 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org
View or Download full articleAccess options
SWS access login
Login as SWS Scientific CommitteeLogin as SWS Scientific PartnerLogin as SWS AuthorAuthors and approved SWS contributors will read and export their own linked papers after identity matching by SWS profile, email and SGEM GlobalID.
For librarian assistance: [email protected]
Purchase Instant Access
- Article can be downloaded after successful payment.
- Article may be used according to SWS library access terms.
- Article cannot be redistributed.

