Have a personal or library account? Click to login

Diversity of Photogrammetric Approaches for Multi-Purpose Applications

Open Access
|Jul 2014

References

  1. Aguilera, D., Lahoz, J., Finat, J., Martinez, J., Fernandez, J., & San Josem, J. (2006). Terrestrial laser scanning and low-cost aerial photogrammetry in the archeological modeling of a Jewish tanneries. International Archives of Photogram., Remote Sensing, Volume XXXVIII-5/W1
  2. Alshawabkeh,Y., & Haala, N. (2004). Integration of Digital Photogrammetry and Laser Scanning for Heritage Documentation. International Archives of Photogrammetry and Remote Sensing, Volume XXXV, B5, Istambul
  3. Bakuła, K. (2010). Comparison of the object shape generated from digital images and laser Scanning (MSc Diploma thesis), Warsaw University of Technology
  4. Berladin, J.A., Picard M., El-Hakim J., Godin G., Bandiera A., & Latouche D. (2003). Virtuayizing a Byzantine crypt by combining high-resolution textures with laser scanner 3D data. Proceedings of VMMS 202, pp. 3-14
  5. Brazetti, L., & Scaioni M. (2009). Automatic orientation of image sequences for 3D object reconstruction: first results of a method integrating photogrammetric and computer vision algorithms. International Archives of Photogram., Remote Sensing, Volume XXXVIII-5/W1
  6. Briese, Ch., Pfeifer, N., & Haring, A. (2003). Laser scanning and photogrammetry for the modeling of the statue Marc Anton. Proceedings of XIX CIPA Symposium, Antalya
  7. Bujakiewicz, A., Arcisz, M., & Zawieska, D. (2008). Use of Multiscale Images for Data Bases of 3D Architectural Objects. Archives of Photogrammetry, Cartography and Remote Sensing,18a, pp. 39-48
  8. Bujakiewicz, A., Kowalczyk, M., Podlasiak, P., & Zawieska, D. (2006). 3D Reconstruction and Modeling of the Contact Surfaces for the Archeological Small Museum Pieces. International Archives of Photogrammetry and Remote Sensing, vol. XXXVI, Part 5, pp. 56-61
  9. Bujakiewicz A., Kowalczyk M., Podlasiak P., & Zawieska D. (2006). Calibration of Very Close Range Digital Cameras. Journal of PAN Geodesy and Cartography, 55, No. 2, pp. 95-108
  10. Bujakiewicz, A., Podlasiak, P., & Zawieska D. (2011). Georeferencing of Close Range Photogrammetric Data. Archives of Photogrammetry, Cartography and Remote Sensing, 23, pp. 91-104
  11. Dominik, W. (2008). Generation of Realistic 3D Model from Terrestrial Laser Scanning and Imagery Data. (MSc Diploma thesis), Warsaw University of Technology
  12. Forstner, W. (2002). Computer Vision and Photogrammetry - Mutual Questions: Geometry, Statistics and Cognition. Proceedings of. International Symposium of CIPA on Photogrammetry. meets Geoinformation, Potsdam
  13. Guarnieri, A., Remondino F., & Vettore A. (2006). Digital Photogrammetry and TLS Data Fusion Applied to Cultural Heritage 3D Modeling. International Archives of Photogram., Remote Sensing, Vol. XXXVI, Part 5
  14. Hao, X., & Mayer, H. (2003). Orientation and Auto-Calibration of Image Triplets and Sequences, IAPRSSIS, 34(3/W8), pp. 73-78
  15. Kraus, K. (2007). Photogrammetry, vol.1, Fundamentals and Standard Processes, Bonn: Dümmlers
  16. Kurczyński, Z. (2006). Aerial and satellite imagery of Earth. Warsaw: Warsaw University of Technology Publishing House
  17. Lisowska, P. (2007). Use of Digital Photogrammetry for Architectural Inventory (Eng. Diploma thesis), Warsaw University of Technology
  18. Markiewicz, J. (2012). Aspects of photogrammetric data integration for generation 3D models of the selected objects located in the urban space., Archives of Photogrammetry, Cartography and Remote Sensing, 24, pp. 199 - 209
  19. Mayer, H., Matthias, M., & Peipe, J. (2003). Comparison of Photogrammetric and Computer Vision Techniques - 3D Reconstruction and Vizualization of Wartburg Castle. Proceedings of XIX CIPA Symposium, Antalya
  20. Mundy, J.L. (1993). The Relationship between Photogrammetry and Computer Vision. Integration Photogrammetric Technologies., Scene Analyses and Machine Vision, Ed. SPIE, vol. 1944, pp. 92-105
  21. Nettley, A., Anderson, K., DeSilvey C., & Caseldine, C. (2011). Using terrestrial laser scanning and LiDAR data for photo-realistic visualization of climate impacts at heritage sites. International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, vol. XXXVIII-5/W16,
  22. Pollefeys, M., Van Gool, L., Vergauwen, M., Verbiest, F., Cornelis, K., Tops, J., & Koch R. (2004). Visual modeling with a hand-held camera. IJCV, 59 (3), pp. 207-232, 10.1023/B:VISI.0000025798.50602.3a
  23. Schindler, K. (2012). Developments in Computer Vision and its Relation to Photogrammetry Invited paper of XXII ISPRS Congress in Malbourne
  24. Walker, S. (2012). Developments in Photogrammetry. Invited paper of XXII ISPRS Congress in Malbourne
  25. Zawieska D., Bakuła K., & Podlasiak P. (2012). Analysis of surface deformation of construction element with usage of image-based matching. Archives of Photogrammetry, Cartography and Remote Sensing, 23, pp. 521-529
  26. Zawieska, D. (2012). Multi-image Matching of Close Range Photographs for Photorealistic 3D Models Reconstruction. Warsaw: Warsaw University of Technology Publishing House
DOI: https://doi.org/10.2478/rgg-2014-0002 | Journal eISSN: 2391-8152 | Journal ISSN: 0867-3179
Language: English
Page range: 9 - 19
Published on: Jul 26, 2014
Published by: Warsaw University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 2 times per year

© 2014 Aleksandra Bujakiewicz, Jakub Markiewicz, Krzysztof Bakuła, Dorota Zawierska, published by Warsaw University of Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.