Mobile QR Code QR CODE : Journal of the Korean Society of Civil Engineers
1 
Arayici, Y. (2008). “Towards building information modelling for existing structures.” Structural Survey, Vol. 26, No. 3, pp. 210-222.10.1108/02630800810887108Arayici, Y. (2008). “Towards building information modelling for existing structures.” Structural Survey, Vol. 26, No. 3, pp. 210-222.DOI
2 
Becerik-Gerber, B., Jazizadeh, F., Kavulya, G. and Calis, G. (2011). “Assessment of target types and layouts in 3D laser scanning for registration accuracy.” Automation in Construction, Vol. 20, No. 5, pp. 649-658.10.1016/j.autcon.2010.12.008Becerik-Gerber, B., Jazizadeh, F., Kavulya, G. and Calis, G. (2011). “Assessment of target types and layouts in 3D laser scanning for registration accuracy.” Automation in Construction, Vol. 20, No. 5, pp. 649-658.DOI
3 
Budroni, A. and Böhm, J. (2010). “Automatic 3D modelling of indoor manhattan-world scenes from laser data.” Proc. of the ISPRS Commission V Symposium.Budroni, A. and Böhm, J. (2010). “Automatic 3D modelling of indoor manhattan-world scenes from laser data.” Proc. of the ISPRS Commission V Symposium.Google Search
4 
Faro, Faro Focus3D brochure, Available at: http://www.faroasia. com/resource-centre/assets/sea/brochures/FLS_Focus3D_EN.pdf (Accessed: January 31, 2015).Faro, Faro Focus3D brochure, Available at: http://www.faroasia. com/resource-centre/assets/sea/brochures/FLS_Focus3D_EN.pdf (Accessed: January 31, 2015).Google Search
5 
Fischler, M. A. and Bolles, R. C. (1981). “Random sample consensus: A Paradigm for Model Fitting with Applications to Image Analysis and Automated Cartography.” Communications of the ACM, Vol. 24, No. 6, pp. 381-395.10.1145/358669.358692Fischler, M. A. and Bolles, R. C. (1981). “Random sample consensus: A Paradigm for Model Fitting with Applications to Image Analysis and Automated Cartography.” Communications of the ACM, Vol. 24, No. 6, pp. 381-395.DOI
6 
Fröhlich, C. and Mettenleiter, M. (2004). “Terrestrial laser scanning- new perspectives in 3D surveying.” International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. 36, Part. 8, W2.Fröhlich, C. and Mettenleiter, M. (2004). “Terrestrial laser scanning- new perspectives in 3D surveying.” International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. 36, Part. 8, W2.Google Search
7 
Hajian, H. and Becerik-Gerber, B. (2010). “Scan to BIM: Factors Affecting Operational and Computational Errors and Productivity Loss.” The 27th International Symposium on Automation and Robotics in Construction (ISARC).Hajian, H. and Becerik-Gerber, B. (2010). “Scan to BIM: Factors Affecting Operational and Computational Errors and Productivity Loss.” The 27th International Symposium on Automation and Robotics in Construction (ISARC).Google Search
8 
Hammoudi, K., Dornaika, F. and Paparoditis, N. (2009). “Extracting building footprints from 3D point clouds using terrestrial laser scanning at street level.” ISPRS/CMRT09, 38, pp. 65-70.Hammoudi, K., Dornaika, F. and Paparoditis, N. (2009). “Extracting building footprints from 3D point clouds using terrestrial laser scanning at street level.” ISPRS/CMRT09, 38, pp. 65-70.Google Search
9 
Heo, J., Jeong, S., Park, H., Jung, J., Han S., Hong, S. and Sohn, H. (2013). “Productive high-complexity 3D city modeling with point clouds collected from terrestrial LiDAR, Computers.” Environment and Urban Systems, Vol. 41, pp. 26-38. 10.1016/j.compenvurbsys.2013.04.002Heo, J., Jeong, S., Park, H., Jung, J., Han S., Hong, S. and Sohn, H. (2013). “Productive high-complexity 3D city modeling with point clouds collected from terrestrial LiDAR, Computers.” Environment and Urban Systems, Vol. 41, pp. 26-38.DOI
10 
Hong, S., Jung, J., Kim, S., Hong, S. and Heo, J. (2013), “Semi- automatic method for constructing 2D and 3D indoor GIS maps based on point clouds from terrestrial LiDAR.” Journal of the Korean Society for Geospatial Information System, Vol. 21, No. 2, pp. 99-105 (in Korean).10.7319/kogsis.2013.21.2.099Hong, S., Jung, J., Kim, S., Hong, S. and Heo, J. (2013), “Semi- automatic method for constructing 2D and 3D indoor GIS maps based on point clouds from terrestrial LiDAR.” Journal of the Korean Society for Geospatial Information System, Vol. 21, No. 2, pp. 99-105 (in Korean).DOI
11 
Ingensand, H. (2006). “Metrological aspects in terrestrial laser- scanning technology.” Proceedings of the 3rd IAG/12th FIGURE symposium, Baden, Austria.Ingensand, H. (2006). “Metrological aspects in terrestrial laser- scanning technology.” Proceedings of the 3rd IAG/12th FIGURE symposium, Baden, Austria.Google Search
12 
Jazayeri, I., Rajabifard, A. and Kalantari, M. (2014). “A geometric and semantic evaluation of 3D data sourcing methods for land and property information.” Land Use Policy, Vol. 36, pp. 219-230.10.1016/j.landusepol.2013.08.004Jazayeri, I., Rajabifard, A. and Kalantari, M. (2014). “A geometric and semantic evaluation of 3D data sourcing methods for land and property information.” Land Use Policy, Vol. 36, pp. 219-230.DOI
13 
Leica Geosystems, Leica ScanStation C10. (2015). Available at: http://hds.leica-geosystems.com/downloads123/hds/hds/ScanStation%20C10/brochures-datasheet/Leica_ScanStation_C10_DS_en.pdf (Accessed: January 31, 2015).Leica Geosystems, Leica ScanStation C10. (2015). Available at: http://hds.leica-geosystems.com/downloads123/hds/hds/ScanStation%20C10/brochures-datasheet/Leica_ScanStation_C10_DS_en.pdf (Accessed: January 31, 2015).Google Search
14 
Randall, T. (2011). “Construction engineering requirements for integrating laser scanning technology and building information modeling.” Journal of Construction Engineering and Management, Vol. 137, No. 10, pp. 797-805.10.1061/(ASCE)CO.1943-7862.0000322Randall, T. (2011). “Construction engineering requirements for integrating laser scanning technology and building information modeling.” Journal of Construction Engineering and Management, Vol. 137, No. 10, pp. 797-805.DOI
15 
Schulz, T. (2008) “Calibration of a terrestrial laser scanner for engineering geodesy.” Institut für Geodäsie und Photogrammetrie an der Eidgenössischen Technischen Hochschule Zürich.Schulz, T. (2008) “Calibration of a terrestrial laser scanner for engineering geodesy.” Institut für Geodäsie und Photogrammetrie an der Eidgenössischen Technischen Hochschule Zürich.Google Search
16 
Tang, P., Huber, D., Akinci, B., Lipman, R. and Lytle, A. (2010). “Automatic reconstruction of as-built building information models from laser-scanned point clouds: A Review of Related Techniques.” Automation in construction, Vol. 19, No. 7, pp. 829-843.10.1016/j.autcon.2010.06.007Tang, P., Huber, D., Akinci, B., Lipman, R. and Lytle, A. (2010). “Automatic reconstruction of as-built building information models from laser-scanned point clouds: A Review of Related Techniques.” Automation in construction, Vol. 19, No. 7, pp. 829-843.DOI
17 
Topcon, 9-series, robotic Total Station System. (2015). Available at: http://www.topcon-positioning.com/sites/default/files/literature/ 9_Series_ Broch_7010_ 2014_RevA.pdf (Accessed: January 31, 2015).Topcon, 9-series, robotic Total Station System. (2015). Available at: http://www.topcon-positioning.com/sites/default/files/literature/ 9_Series_ Broch_7010_ 2014_RevA.pdf (Accessed: January 31, 2015).Google Search