Full text: Proceedings, XXth congress (Part 3)

    
rt B3. Istanbul 2004 
ieo image. The bundle 
1e number of exterior 
15 to 9 as a result of 
he polynomials which 
on parameters (i.e. o, 
the bundle adjustment 
s and check points for 
ble 4. The result of 
tables 4 and 5. 
iation 16 yields better 
esults show increased 
equation respectively. 
ent RMSE values for 
TM coordinate system 
. 
: residual errors in the 
geocentric coordinate 
he Tkonos Geo image 
equation 16, over the 
Check Points (n=34) 
API(m) 
0.89 
conos Geo image was 
always available for 
y images from high 
> the rigorous physical 
as RFM, DLT, SDLT, 
ywledge of the sensor 
orientation parameters. 
nsed imagery acquired 
iccurate geopositioning 
d control points. 
righer accuracy of data 
e imaging geometry of 
's such as lkonos-2, 
bView 3, we can use 
r the flexibility and 
er model approach has 
and the method should 
ition satellite imaging 
it Ikonos Geo imagery 
object features such as 
d, an accuracy of better 
with orbital parameter 
icy of Ikonos Precision 
; 
e the Iranian Remote 
[konos image, and the 
providing 1:1000 scale 
  
Dowman, l., and Tao C. V., 2002. An update on the use of rational 
functions for photogrammetric restitution, Highlights ISPRS, Vol. 
7, No. 3, pp. 22-29. 
Fraser, C.S., Baltsavias, E., Gruen, A., 2002a. Processing of 
Ikonos imagery for submeter 3D positioning and building 
extraction. ISPRS Journal of Photogrammetry & Remote Sensing, 
56(2002), pp. 177-194. 
Fraser, €.S. Hanley, HLB.'and- Yamakawa, T... 2009b. 3D 
geopositioning accuracy of Ikonos imagery, Photogrammetric 
Record, 17(99), 465-479. 
Gerlach, F.,2000. Characteristics of Space Imaging’s one-meter 
resolution satellite imagery products. [Int'l Archives of 
Photogrammetry and Remote Sensing, 33(Part B1): 128-135. 
Grodecki, J. and Dial, G., 2001. lkonos geometric accuracy, 
Proceedings of Joint ISPRS Workshop on “High Resolution 
Mapping from Space 2001" (CD ROM), 19-21 September, 
Hannover, Germany, unpaginated. 
Hanley H.B. and Fraser C.S., 2001. Geopositioning accuracy of 
Ikonos imagery: indications from 2D transformations, 
Photogrammetric Record, 17(98), 317-329. 
OGC (OpenGIS Consortium), 1999. The OpenGIS Abstract 
Specification-Topic 7: The Earth Imagery Case, URL: 
http://www.opengis.org/public/abstract/99-107.pdf. 
Sadeghian, S., 2002. Photogrammetric evaluation of high 
resolution space imagery for large scale mapping, Case study: 
Ikonos Geo pachromatic image of Iran. PAD thesis, University of 
Tehran:200 pages. 
Sadeghian, S., Delavar M. R., 2003. An investigation of geometric 
correction and uncertainty assessment of high resolution images. 
Second International Symposium on Spatial Data Quality. Hong 
Kong, March, The Hong Kong Polytechnic University, pp. 89-99. 
Sadeghian, S., Valadan Zoej, M. J., Delavar and M. R, 
Abootalebi, A., 2001a. Precision rectification of KFA-1000 and 
IKONOS images using the multiquadric and DLT model over test 
International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol XXXV, Part B3. Istanbul 2004 
areas in IRAN, Photogrammetric Journal of Finland, Vol. 17, 
No.2, pp.69-77. 
Sadeghian, S., Valadan Zoej, M. J, Delavar and M. R, 
Abootalebi, A., 2001b. Precision rectification of high resolution 
satellite imagery without ephemeris data, International Journal of 
Applied Earth Observation and Geoinformation (JAG), Vol. 3, 
Issue 4, pp. 366-371. 
Tao C. V. and Hu. Y., 2001. A comprehensive study of the 
rational function model for photogrammetric processing. 
Photogrammetric Engineering and Remote Sensing, 67(12):1347- 
1357. 
Tao C. V. and Hu. Y., 2002. 3D Reconstruction methods based on 
the rational function model. Photogrammetric Engineering and 
Remote Sensing, 68(7):705-714. 
Valadan Zoej, M. J., 1997. Photogrammetric evaluation of space 
linear array imagery for medium scale topographic mapping. PhD 
thesis, volumel, University of Glasgow: 303 pages. 
Valadan Zoej M.J. and Sadeghian S., 2003a. Rigorous and Non- 
Rigorous Photogrammetric Processing of Ikonos Geo Image. Joint 
Workshop of ISPRS WG 1/2, 1/5, IC WG IVIV, High Resolution 
Mapping from Space 2003, 6-8 Oct, Hannover, Germany, 6 pages. 
Valadan Zoej and M. J., Sadeghian, S., 2003b. Orbital parameter 
modeling accuracy testing of Ikonos Geo image, Photogrammetric 
Journal of Finland, Vol. 18, No. 2, pp. 70-80. 
Valadan Zoej, M.J., Mansourian, A., Mojaradi, B. and Sadeghian, 
S., 2002. 2D geometric correction of Ikonos imagery using genetic 
algorithm, Symposium on geospatial theory, processing and 
applications, (CD-ROM), 9-12 July, Ottawa, unpaginated. 
Valadan Zoej and M. J. and Petrie, G., 1998. Mathematical 
modelling and accuracy testing of SPOT level 1B stercopairs. 
Photogrammetric Record, 16(91), pp. 67-82. 
Valadan Zoej, M. J. and Foomani, J, 1999, Mathematical 
modeling and accuracy testing of IRS-1C stereo pairs. Joint 
Workshop of ISPRS WG I/1, I/3 and IV/4, Sensors and Mapping 
from Space, Hannover, September. 
  
   
    
   
     
      
     
   
  
  
  
     
     
   
    
     
        
   
   
    
  
  
  
  
  
  
  
   
   
  
  
  
 
	        
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