TY - JOUR
T1 - Impact Analysis of Buildings for KOMPSAT-3 Image Co-registration
AU - Park, Jueon
AU - Kim, Taeheon
AU - Yun, Yerin
AU - Lee, Chabin
AU - Lee, Jinmin
AU - Lee, Changno
AU - Han, Youkyung
N1 - Publisher Copyright:
© 2022 Korean Society of Surveying. All rights reserved.
PY - 2022
Y1 - 2022
N2 - In this study, to analyze the effect of buildings on the image co-registration performance, co-registration results are compared according to the presence or absence of matching points extracted from buildings. To remove the matching points extracted from buildings, a building mask generated by extracting building objects from the digital topographic map was used. In addition, matching points extraction performance and image co-registration accuracy were analyzed according to the magnitude of the convergence angle. Image co-registration results were compared by applying the affine and piecewise linear transformation models, respectively. According to the experimental results, the affine transformation model showed an overall improvement in accuracy after removing the matching points extracted from buildings. On the other hand, the piecewise linear transformation model improved the accuracy at the checkpoints including the surrounding buildings, but the accuracy improvement was not significant at checkpoints in the flat area without the existence of buildings. In addition, when the piecewise linear transformation model was applied, stable accuracy of less than 2 pixels was derived from images with a convergence angle of 20° or less.
AB - In this study, to analyze the effect of buildings on the image co-registration performance, co-registration results are compared according to the presence or absence of matching points extracted from buildings. To remove the matching points extracted from buildings, a building mask generated by extracting building objects from the digital topographic map was used. In addition, matching points extraction performance and image co-registration accuracy were analyzed according to the magnitude of the convergence angle. Image co-registration results were compared by applying the affine and piecewise linear transformation models, respectively. According to the experimental results, the affine transformation model showed an overall improvement in accuracy after removing the matching points extracted from buildings. On the other hand, the piecewise linear transformation model improved the accuracy at the checkpoints including the surrounding buildings, but the accuracy improvement was not significant at checkpoints in the flat area without the existence of buildings. In addition, when the piecewise linear transformation model was applied, stable accuracy of less than 2 pixels was derived from images with a convergence angle of 20° or less.
KW - Building Impact Analysis
KW - Convergence Angle
KW - Image Co-registration
KW - KOMPSAT-3
UR - https://www.scopus.com/pages/publications/85148893373
U2 - 10.7848/ksgpc.2022.40.4.293
DO - 10.7848/ksgpc.2022.40.4.293
M3 - Article
AN - SCOPUS:85148893373
SN - 1598-4850
VL - 40
SP - 293
EP - 304
JO - Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
JF - Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
IS - 4
ER -