Full text: Proceedings, XXth congress (Part 3)

bul 2004 
itomatic 
6m. The 
itomatic 
lely- 3 
e" aerial 
1; 2) no 
3) this 
illdings; 
'Oscopic 
ing this 
reduces 
ify at a 
proach. 
  
  
  
International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XXXV, Part B3. Istanbul 2004 
  
  
o ii. nm y P^ 
Een Rum 3S 
pm gx | 
CTS 
50900099 UD 300 
  
fe rain Hew Gode es 
  
  
  
  
Figure 4: The manual mapping (bright) and the semi-automatic mapping (dark) are presented in local coordinates system. 
Mx = My=2.5xmxm, = +1.04m 
Mz =2.3xmxm, x f /b = +1.61m 
(8,9) 
Z 
Mx = My = y m,-mxm,-0.42m do) 
  
Mz 2 mxm, xf i0 70% (11) 
b 
x24 
9 9 a 
s e — z = 12 
M nt nent + ML, = M tutive = n (32) 
6. REFERENCES 
Ackermann, F., 1984. "Digital Image Correlation: Performance 
and Potential Application in Photogrammetry". 
Photogrammetria, 11(64): 429-439. 
Cord, M. and Declercq, D., 2001. Three Dimensional Building 
Detection and Modeling Using a Statistical Approach. IEEE 
Transactions on Image Processing. V10, 715-723. 
Croitoru A., Doytsher Y., 2003. Monocular Right-Angle 
Building Hypothesis Generation in Regularized Urban Areas by 
Pose Clustering, Photogrammetric Engineering & Remote 
Sensing. 69(2): 151—169. 
Filin S., Doytsher Y., 1999. A Linear Mapping Approach for 
Map Conflation: Matching of Polylines. Surveying and Land 
Information Systems, Vol. 59(2), pp.107-114. 
Irvin R.B. and McKeown D.M., 1989. Method for Exploiting 
the Relationship between Buildings and their Shadows in Aerial 
Imagery, IEEE Transactions on systems, man, and cybernetics, 
19(6):1564-1575. 
Kokubu K., Kohiyama M., Umemura F. and Yamazaki F., 
2001. Automatic Detection of Building Properties from Aerial 
Photographs Using Color and 3D Configuration. Presented at 
the 22nd Asian Conference on Remote Sensing, November 
2001, Singapore. 
719 
Lobanov A.N., 1984. 
Moscow, "Nedra", p. 552. 
"Photogrammetry", Second edition, 
Mayer, H., 1999. Automatic Object Extraction from Aerial 
Imagery — a Survey Focusing on Buildings. Computer Vision 
and Image Understanding 74 (2), 138-149. 
McKeown, D.M., Bulwinkle, T.M., Cochran, S., Harvey, W., 
McGlone, C., Shufelt, J.A., 2000. Performance Evaluation for 
Automatic Feature Extraction. International Archives of 
Photogrammetry and Remote Sensing 33 (Part B2), 379-394. 
Michel, A. Goretta, O. and Lorin, L. 1999. 3D Building 
Extraction based on Aerial Stereoscopic Images. Proceedings of 
SPIE - The International Society For Optical Engineering; 
v.3808, p: 624-633. 
Peled, A., Raizman, Y. 1997. Toward Automatic Updating of 
the Israeli National GIS. Proceedings, ISPRS WG 11/2, 111/3 
and II\8 Joint Workshop on Theoretical and Practical Aspects of 
Surface Reconstruction and 3-D Object Extraction, Haifa, 
ISRAEL, September 9-11, 1997. pp. 114-119. 
Ruther, H., Martine, H., and Mtalo, E, G. 2002. Application of 
snakes and dynamic programming optimisation technique in 
modeling of buildings in informal settlement areas. Journal of 
Photogrammetry & Remote Sensing, V56, p: 269-282. 
Shufelt, J.A., McKeown, D.M., 1993. Fusion of monocular cues 
to detect manmade structures in aerial imagery. Computer 
Vision Graphics and Image Understanding 57 (3), 307-330. 
Thompson E. H., 1968. The Projective Theory of Relative 
Orientation. Photogrammetria 23(2). pp. 67-75. 
Tseng Y. and Wang S.,2003. Semiautomated building 
extraction based on CSG model, Photogrammetric Engineering 
& Remote Sensing, 69(2):171-180. 
Weidner U. and Forstner W., 1995. Toward automatic building 
reconstruction from high resolution digital elevation model. 
ISPRS Journal of Photogrammetry & Remote Sensing, V50, 
Nod, p: 38-49. 
  
  
  
 
	        
Waiting...

Note to user

Dear user,

In response to current developments in the web technology used by the Goobi viewer, the software no longer supports your browser.

Please use one of the following browsers to display this page correctly.

Thank you.