VISUALIZATION OF PHOTOREALISTIC CITY MODELS
DOI:
https://doi.org/10.24867/07KG04AndrejevicKeywords:
3D city model, Level of details, CityGMLAbstract
The 3D geoinformation is becoming important for cities and their policies. The cities are therefore exploring the possibilities of 3D virtual city models for more efficient decision making. To maximize the economic benefit of such data,the cities can provide their 3D geospatial data for further usage, and so, new applications can be created. This paper proposes one such application solution.
References
[1] Stoter, J. and Van Oosterom, P. (2002). Incorporating 3d geo-objects into a 2d geo-dbms. In Proceedings FIG, ACSM/ASPRS, Washington DC, April 19-26, 2002.
[2] Brodeur, J. (2012). Geosemantic interoperability and the geospatial semantic web. In Springer Handbook of Geographic Information, pages 291–310. Springer.
[3] Groger,G., Plumer,L. :CityGML – Interoperable semantic 3D city models. ISPRS Journal of Photogrammetry and Remote Sensing 71, 12–33 (2012).
[4] Döllner, J., & Buchholz, H. (2005). Continuous level-of-detail modelling of buildings in virtual 3D city models. In C. Shahabi & O. Boucelma (Eds.), 13th ACM International Symposium of Geographical Information Systems (pp. 173-181). Bremen: ACM, New York, USA.
[5] Kolbe, T. H. (2009). Representing and exchanging 3d city models with citygml. In 3D geo-information sciences, pages 15–31. Spring.
[6] Stojakovic V, Generisanje prostora na osnovu perspektivnih slika i primena u oblasti graditeljskog nasleđa, doktorska disertacija, Fakultet tehnickih nauka, Novi Sad
[7] Patais, Petros. 2001. Photogrammetry and visualization. Technical Report, Zurich, Switzerland: Institute of Geodesy and Photogrammetry, ETH.
[8] OGC (2012). OGC city geography markup language (citygml) encoding standard 2.0. Technical Report OGC 12-019, Open Geospatial Consortium
[9] HÁJEK, P., JEDLIČKA, K., VICHROVÁ, M., FIALA, R. Conceptual approach of information rich 3D model about the Terezín Memorial. In Geoinformatics FCE CTU, 2013, Nr. 11, p. 49-62. ISSN: 1802-2669.
[10] Liukkonen, O. 2015. Path of municipal spatial data from a stock map to a 3D city model. Master thesis, Aalto University. p.92.
[2] Brodeur, J. (2012). Geosemantic interoperability and the geospatial semantic web. In Springer Handbook of Geographic Information, pages 291–310. Springer.
[3] Groger,G., Plumer,L. :CityGML – Interoperable semantic 3D city models. ISPRS Journal of Photogrammetry and Remote Sensing 71, 12–33 (2012).
[4] Döllner, J., & Buchholz, H. (2005). Continuous level-of-detail modelling of buildings in virtual 3D city models. In C. Shahabi & O. Boucelma (Eds.), 13th ACM International Symposium of Geographical Information Systems (pp. 173-181). Bremen: ACM, New York, USA.
[5] Kolbe, T. H. (2009). Representing and exchanging 3d city models with citygml. In 3D geo-information sciences, pages 15–31. Spring.
[6] Stojakovic V, Generisanje prostora na osnovu perspektivnih slika i primena u oblasti graditeljskog nasleđa, doktorska disertacija, Fakultet tehnickih nauka, Novi Sad
[7] Patais, Petros. 2001. Photogrammetry and visualization. Technical Report, Zurich, Switzerland: Institute of Geodesy and Photogrammetry, ETH.
[8] OGC (2012). OGC city geography markup language (citygml) encoding standard 2.0. Technical Report OGC 12-019, Open Geospatial Consortium
[9] HÁJEK, P., JEDLIČKA, K., VICHROVÁ, M., FIALA, R. Conceptual approach of information rich 3D model about the Terezín Memorial. In Geoinformatics FCE CTU, 2013, Nr. 11, p. 49-62. ISSN: 1802-2669.
[10] Liukkonen, O. 2015. Path of municipal spatial data from a stock map to a 3D city model. Master thesis, Aalto University. p.92.
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Published
2020-05-01
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Section
Geodesy Engineering