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A PROPOSAL FOR ONE-IMAGE PHOTOGRAMMETRY SYSTEM FOR MEASURING THE CLEARANCE DISTANCE. CASE STUDY.
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Błazek M. et al. 2014. “An Unorthodox View on the Problem of Tracking Facial Expressions.” Computer Science and Information Systems (FedCSIS), 2014 Federated 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org Photogrammetry and Remote Sensing Conference on. IEEE 85 –91. Retrieved (https://fedcsis.org/proceedings/2014/drp/495.html), DOI: 10.15439/2014F495.
Carbonneau P. E., S. N. Lane, and N. E. Bergeron. 2003. “Cost -Effective Non - Metric Close-Range Digital Photogrammetry and Its Application to a Study of Coarse Gravel River Beds.” International Journal of Remote Sensing 24(14):2837–54.
Duane C. B. 1971. “Close -Range Camera Calibration.” Photogram. Eng. Remote Sens 37:855–66.
Fryer J. G. and D. C. Brown. 2015. “Lens Distortion for Close -Range Photogrammetry.” Photogrammetric engineering and remote sensing 52 (1986) (September):51 –58.
Galantucci Luigi Maria, Gianluca Percoco, and Eliana Di Gioia. 2010. “Low Cost 3D Face Scanning Based on Landmarks and Photogrammetry.” Intelligent Automation and Computer Engineering. Springer Netherlands 93 – 106. Retrieved (http://www.springerlink.com/index/DOI: 10.1007/978-1-4614-0373-9).
Hartley Richard I. 1992. “Estimation of Relative Camera Positions for Uncalibrated Cameras.” Pp. 579– 87 in Proceedings of the Second European Conference on Computer Vision.
Janowski, Artur and Jakub Szulwic. 2014. “Synchronic Digital Stereophotography and Photogrammetric Analyses in Monitoring the Flow of Liquids in Open Channels.” in International Conference “Environmental Engineering”(9th ICEE), Selected Papers, eISSN.
Luhmann T., S. Robson, S. Kyle, and I. Harley. 2006. Close Range Photogrammetry: Principles, Methods and Applications. Whittles.
Mikrut S., Pyka K., Tokarczyk R. 2012. Systemy Do Pomiaru Skrajni Kolejowej- Przegląd I Tendencje Rozwojowe. Kraków: Akademia Górniczo-Hutnicza.
Strach M.,Kampczyk A. 2011. “Surveys of Geometry of Rail Track Facilities and Railway Tracks in the Infrastructure of Rail Transport.” Reports on Geodesy.
Tokarczyk R. and S. Mikrut. n.d. “Close Range Photogrammetry System for Medicine and Railways.” International Archieves of Photogrammetry and Remote Sensing, B5(Working Group V/11, Amsterdam 2000).
Wiedemann Albert and Jörg Albertz. n.d. “From Analogue To Digital Close -Range Photogrammetry.” First Turkish-German Joint Geodetic Days 1995 (1996) 245– 53.
Zhang Z., S. Yang, J. Zhang, and T. Ke. 2007. “Multi -Baseline Digital Close- Range Photogrammetry [J].” Geospatial Information 1:1–4. 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
Błazek M. et al. 2014. “An Unorthodox View on the Problem of Tracking Facial Expressions.” Computer Science and Information Systems (FedCSIS), 2014 Federated 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org Photogrammetry and Remote Sensing Conference on. IEEE 85 –91. Retrieved (https://fedcsis.org/proceedings/2014/drp/495.html), DOI: 10.15439/2014F495.
Carbonneau P. E., S. N. Lane, and N. E. Bergeron. 2003. “Cost -Effective Non - Metric Close-Range Digital Photogrammetry and Its Application to a Study of Coarse Gravel River Beds.” International Journal of Remote Sensing 24(14):2837–54.
Duane C. B. 1971. “Close -Range Camera Calibration.” Photogram. Eng. Remote Sens 37:855–66.
Fryer J. G. and D. C. Brown. 2015. “Lens Distortion for Close -Range Photogrammetry.” Photogrammetric engineering and remote sensing 52 (1986) (September):51 –58.
Galantucci Luigi Maria, Gianluca Percoco, and Eliana Di Gioia. 2010. “Low Cost 3D Face Scanning Based on Landmarks and Photogrammetry.” Intelligent Automation and Computer Engineering. Springer Netherlands 93 – 106. Retrieved (http://www.springerlink.com/index/DOI: 10.1007/978-1-4614-0373-9).
Hartley Richard I. 1992. “Estimation of Relative Camera Positions for Uncalibrated Cameras.” Pp. 579– 87 in Proceedings of the Second European Conference on Computer Vision.
Janowski, Artur and Jakub Szulwic. 2014. “Synchronic Digital Stereophotography and Photogrammetric Analyses in Monitoring the Flow of Liquids in Open Channels.” in International Conference “Environmental Engineering”(9th ICEE), Selected Papers, eISSN.
Luhmann T., S. Robson, S. Kyle, and I. Harley. 2006. Close Range Photogrammetry: Principles, Methods and Applications. Whittles.
Mikrut S., Pyka K., Tokarczyk R. 2012. Systemy Do Pomiaru Skrajni Kolejowej- Przegląd I Tendencje Rozwojowe. Kraków: Akademia Górniczo-Hutnicza.
Strach M.,Kampczyk A. 2011. “Surveys of Geometry of Rail Track Facilities and Railway Tracks in the Infrastructure of Rail Transport.” Reports on Geodesy.
Tokarczyk R. and S. Mikrut. n.d. “Close Range Photogrammetry System for Medicine and Railways.” International Archieves of Photogrammetry and Remote Sensing, B5(Working Group V/11, Amsterdam 2000).
Wiedemann Albert and Jörg Albertz. n.d. “From Analogue To Digital Close -Range Photogrammetry.” First Turkish-German Joint Geodetic Days 1995 (1996) 245– 53.
Zhang Z., S. Yang, J. Zhang, and T. Ke. 2007. “Multi -Baseline Digital Close- Range Photogrammetry [J].” Geospatial Information 1:1–4. 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
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