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Integration of heterogeneous photogrammetry data for visualization of cultural heritage objects

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Technologies of digital photogrammetry provide the metric and thematic information for various data bases, including those which are created to visualize and archive the cultural heritage objects. Due to different sizes, shapes, locations and environmental conditions of objects, data is acquired by means of various photogrammetric methods based on aerial and terrestrial digital imagery and laser scanning data. They are also very often integrated with data from other sources. Photogrammetric products dedicated for the cultural heritage are usually collected and integrated in 3D GIS data bases, which are used by various specialists involved in restoration of the historical monuments. The variety of photogrammetric data and possibility of multi criterion spatial data processing and analysis in 3D GIS, allow to reconstruct the accurate terrain topography and 3D models of valuable heritage monuments. In this paper, an integration of various photogrammetric products (created in the past and within the discussed project), used for the needs of visualization of the terrain topography and 3D models of historical buildings and vegetation for the Museum of King Jan III’s Palace at Wilanów area, is presented. The following photogrammetric products were utilized: the orthophotomap of 0.1 m resolution from the Geodetic and Cartographic Documentation Centre (CODGiK), ALS - ISOK data, 3D vector data from stereo digitalization of 0.1 m resolution images, the vegetation layer for the area of the Museum of King Jan III’s Palace at Wilanów, acquired from the 3D data base. In addition, some symbols of missing objects were used from the Google 3D WareHouse.
Słowa kluczowe
Twórcy
  • Faculty of Geodesy and Cartography, Warsaw University of Technology
autor
  • Faculty of Geodesy and Cartography, Warsaw University of Technology
  • Faculty of Civil Engineering, Environmental and Geodetic Sciences, Koszalin University of Technology
Bibliografia
  • ANDERSON K., DESILVEY C., CASELDINE C. NETTLEY A. 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, XXXVIII-5/W16: 223-229.
  • AGNELLO F., LO BRUTTO M. 2007. Integrated surveying techniques in cultural heritage documentation. ISPRS Archives, XXXVI-5/W47.
  • AGUILERA D., LAHOZ J., FINAT J., MARTINEZ J., FERNANDEZ J., SAN JOSEM J. 2006. Terrestrial laser scanning and low-cost aerial photogrammetry in the archaeological modelling of a Jewish tanneries. ISPRS Commission V Symposium „Image Engineering and Vision Metrology”, Dresden, 25-27.X.
  • BOULAASSAL H., LANDES T., GRUSSENMEYER P. 2011. Reconstruction of 3D vector models of buildings by combination of ALS, TLS and VLS data. International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XXXVIII-5/W16.
  • BRIESE CH., PFEIFER N., HARING A. 2003. Laser scanning and photogrammetry for the modeling of the statue Marc Anton. International CIPA Symposium, Antalya, 30.IX-04.X.
  • BÖHM J., BECKER S., HALLA N. 2007. Model refinement by integrated processing of laser scanning and photogrammetry. International Archives of Photogrammetry, Remote Sensing and Spatial Information Sciences, XXXVI-5/W47.
  • BUJAKIEWICZ A., ZAWIESKA D. 2013. Interpretacja zmian pokrycia terenu w terenie zabytkowym z wykorzystaniem danych przestrzennych i zdjęć lotniczych (Interpretation of land cover changes within cultural heritage areas with the use of spatial data and aerial photographs). Materiały (CD) VII Ogólnopolskiego Sympozjum Geoinformatyki, Warszawa, wrzesień.
  • CODGIK. 2014. On line: http://www.codgik.gov.pl/index.php/zasob/numeryczne-dane-wysokosciowe.html.
  • COLLADA. 2014. On line: collada.org.
  • DORNINGER P., BRIESE C. 2005. Advanced Geometric Modelling of Historical Rooms. International Archives of Photogrammetry Remote Sensing and Spatial Information Sciences, XXXVI-5/C34.
  • EL-HAKIM S.F., BERALDIN J.A., PICARD M. 2005. Combining 3D technologies for cultural heritage interpretation and entertainment. Spie Digital Library, Proceedings.
  • KACPRZAK M. 2012. Stworzenie i analiza wielowarstwowej bazy danych dla obszaru Wilanów Muzeum z zastosowaniem metod fotogrametrycznych (Creation and analysis of the multi-layer database for the Wilanów Museum area with the use of photogrammetric methods). Master’s thesis, praca dyplomowa - magisterska, Politechnika Warszawska.
  • KRAUS K. 2007. Photogrammetry. Vol. 1. Fundamentals and Standard Processes. Bonn: Dümmlers.
  • MARKIEWICZ J. 2013. Aspekty integracji danych fotogrametrycznych dla generowania 3D modeli wybranych obiektów przestrzeni miejskiej. Archiwum Fotogrametrii, Kartografii i Teledetekcji, 24.
  • SketchUp. 2014. On line: www.sketchup.com.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ca0c7f2e-a553-4cfc-b3b1-a9e65de194b7
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