Skip to main content

Lund University Publications

LUND UNIVERSITY LIBRARIES

Study of 2D and 3D Geometric Models Applied on SAR Images (A Case Study in BAM Area)

Dehghan, Maryam ; Valadan Zoje, Mohammad Javad and Mansourian, Ali LU (2007) In Geosciences Scientific Quarterly Journal (ULUM-I ZAMIN) 17(65). p.186-194
Abstract
study several 2D and 3D math models have been tested in order to correct slant range SAR data geometrically. Some of these models consider the imaging geometry at the time of imaging while the others relate the ground space to the image one by mathematical polynomials. The images used here are 3 ENVISAT ones of Bam area. In order to extract the 3D GCPs, a topographic map with a scale of 1:25000 and SRTM DEM were used. The 2D math models used in this study include Global polynomial, Point wise, Piece wise and Projective while the 3D models are DLT and Rigorous SAR model. Since the images used in this study were originally ordered for interferometry studies, their baseline is so small that the precision of 3D coordinates extraction is not... (More)
study several 2D and 3D math models have been tested in order to correct slant range SAR data geometrically. Some of these models consider the imaging geometry at the time of imaging while the others relate the ground space to the image one by mathematical polynomials. The images used here are 3 ENVISAT ones of Bam area. In order to extract the 3D GCPs, a topographic map with a scale of 1:25000 and SRTM DEM were used. The 2D math models used in this study include Global polynomial, Point wise, Piece wise and Projective while the 3D models are DLT and Rigorous SAR model. Since the images used in this study were originally ordered for interferometry studies, their baseline is so small that the precision of 3D coordinates extraction is not satisfactory enough. However, the results of 2D models are much better. (Less)
Please use this url to cite or link to this publication:
author
; and
publishing date
type
Contribution to journal
publication status
published
subject
keywords
RADAR, SAR IMAGES, GEOMETRIC CORRECTION, CONTROL POINT, RADARGRAMMETRY
in
Geosciences Scientific Quarterly Journal (ULUM-I ZAMIN)
volume
17
issue
65
pages
186 - 194
publisher
Sāzmān-i zamīnʼshināsī kishvar, Tihrān
ISSN
1023-7429
language
English
LU publication?
no
id
7e35e6d2-7545-49f1-8813-9bff9d45f7fe (old id 4779751)
alternative location
http://en.journals.sid.ir/ViewPaper.aspx?ID=113850
date added to LUP
2016-04-01 16:23:45
date last changed
2020-06-01 10:37:28
@article{7e35e6d2-7545-49f1-8813-9bff9d45f7fe,
  abstract     = {{study several 2D and 3D math models have been tested in order to correct slant range SAR data geometrically. Some of these models consider the imaging geometry at the time of imaging while the others relate the ground space to the image one by mathematical polynomials. The images used here are 3 ENVISAT ones of Bam area. In order to extract the 3D GCPs, a topographic map with a scale of 1:25000 and SRTM DEM were used. The 2D math models used in this study include Global polynomial, Point wise, Piece wise and Projective while the 3D models are DLT and Rigorous SAR model. Since the images used in this study were originally ordered for interferometry studies, their baseline is so small that the precision of 3D coordinates extraction is not satisfactory enough. However, the results of 2D models are much better.}},
  author       = {{Dehghan, Maryam and Valadan Zoje, Mohammad Javad and Mansourian, Ali}},
  issn         = {{1023-7429}},
  keywords     = {{RADAR; SAR IMAGES; GEOMETRIC CORRECTION; CONTROL POINT; RADARGRAMMETRY}},
  language     = {{eng}},
  number       = {{65}},
  pages        = {{186--194}},
  publisher    = {{Sāzmān-i zamīnʼshināsī kishvar, Tihrān}},
  series       = {{Geosciences Scientific Quarterly Journal (ULUM-I ZAMIN)}},
  title        = {{Study of 2D and 3D Geometric Models Applied on SAR Images (A Case Study in BAM Area)}},
  url          = {{http://en.journals.sid.ir/ViewPaper.aspx?ID=113850}},
  volume       = {{17}},
  year         = {{2007}},
}