Full text: Technical Commission III (B3)

    
  
  
   
  
   
  
   
   
   
   
  
   
  
  
  
  
   
  
  
   
   
  
  
   
  
  
   
   
  
   
   
   
  
   
  
   
   
   
  
   
   
  
   
  
   
   
   
  
  
   
      
  
  
  
  
  
  
   
   
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010. Quality 
tric Record, 
S, 2010. 
LIDAR data 
togrammetry 
Tymków P., 
or the Opole 
Province GIS website. 3rd Czech-Polish Symposium Brno- 
Wroclaw "Actual Problems of Geodesy, Cartography and 
Photogrammetry', Brno, Lednice - South Moravia, Czech 
Republic, May 25-27, 2011, pp. 22. 
Boulaassal H., Chevier C., Landes T., 2010. From laser data to 
parametric models: towards an automatic method for building 
facade modeling. Lecture Notes in Computer Sciences, Vol. 
6436, pp. 42-55. 
Goluch P., Borkowski A., Józków G., 2007. Ocena dokladno$ci 
danych lotniczego skaningu laserowego systemu ScaLARS. 
Archiwum Fotogrametrii, Kartografii i Teledetekcji, Vol. 17., 
pp. 261-270. 
Gotuch P., Borkowski A., Jozkéw G., 2008. Badanie 
doktadnosci NMT interpolowanego na podstawie danych 
lotniczego skaningu laserowego systemu ScaLARS. Acta 
Scientiarum Polonorum seria Geodesia et Dercriptio Terrarum, 
(7)2, pp. 37-47. 
Gruen A., Akca D. 2005. Least squares 3D surface and curve 
matching. ISPRS Journal of Photogrammetry & Remote 
Sensing, 59, pp. 151-174. 
Keller W., Borkowski A., 2011. Wavelet based buildings 
segmentation in airborne laser scanning data. Geodesy and 
Cartography, Vol. 60 No. 2, Warszawa 2011, pp. 99-123. 
Kraus K., 2000. Photogrammetrie. Band 3. Topographische 
Informatonssysteme. Dümmler, Kóln. 
Open Geospatial Consortium, 2012. OGC City Geography 
Markup Language (CityGML) Encoding Standard. 
hitps://portal. opengeospatial.org/files/?artifact_1d=47842 
pp. 12-13. 
Oude Elberink, S., Vosselman, G. 2011. Quality analysis on 3D 
building models reconstructed from airborne laser scanning 
data. ISPRS Journal of Photogrammetry and Remote Sensing, 
66, 157-165. 
Pu S., Vosselman G., 2006. Automatic extraction of building 
fetures from terrestrial laser scanning. The International 
Archives of the Photogrammetry, Remote Sensing and Spatial 
Information Sciences, Vol. XXXVI, part 5, 5p. 
Vosselman G. 2008. Analysis of planimetric accuracy of 
airborne laser scanning serveys. The International Archives of 
the Photogrammetry, Remote Sensing and Spatial Information 
Sciences, Vol. XXXVI, part 3A, pp. 99-104. 
Vosselman G., Maas, H-G., 2010. Airborne and terrestrial 
laser scanning. Whittles Publishing, Dunbeath.
	        
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