TY - JOUR
T1 - Fine Co-registration performance of KOMPSAT-3 · 3A imagery according to convergence angles
AU - Han, Youkyung
AU - Kim, Taeheon
AU - Kim, Yeji
AU - Lee, Jeongho
N1 - Publisher Copyright:
© 2019 Korean Society of Surveying. All rights reserved.
PY - 2019
Y1 - 2019
N2 - This study analyzed how the accuracy of co-registration varies depending on the convergence angles between two KOMPSAT-3·3A images. Most very-high-resolution satellite images provide initial coordinate information through metadata. Since the search area for performing image co-registration can be reduced by using the initial coordinate information, in this study, the mutual information method showing high matching reliability in the small search area is used. Initial coarse co-registration was performed by using multi-spectral images with relatively low resolution, and precise fine co-registration was conducted centering on the region of interest of the panchromatic image for more accurate co-registration performance. The experiment was conducted by 120 combination of 16 KOMPSAT-3·3A 1G images taken in Daejeon area. Experimental results show that a correlation coefficient between the convergence angles and fine co-registration errors was 0.59. In particular, we have shown the larger the convergence angle, the lower the accuracy of co-registration performance.
AB - This study analyzed how the accuracy of co-registration varies depending on the convergence angles between two KOMPSAT-3·3A images. Most very-high-resolution satellite images provide initial coordinate information through metadata. Since the search area for performing image co-registration can be reduced by using the initial coordinate information, in this study, the mutual information method showing high matching reliability in the small search area is used. Initial coarse co-registration was performed by using multi-spectral images with relatively low resolution, and precise fine co-registration was conducted centering on the region of interest of the panchromatic image for more accurate co-registration performance. The experiment was conducted by 120 combination of 16 KOMPSAT-3·3A 1G images taken in Daejeon area. Experimental results show that a correlation coefficient between the convergence angles and fine co-registration errors was 0.59. In particular, we have shown the larger the convergence angle, the lower the accuracy of co-registration performance.
KW - Convergence Angle
KW - Fine Co-registration
KW - KOMPSAT3·3A
KW - Mutual Information
UR - https://www.scopus.com/pages/publications/85078192312
U2 - 10.7848/ksgpc.2019.37.6.491
DO - 10.7848/ksgpc.2019.37.6.491
M3 - Article
AN - SCOPUS:85078192312
SN - 1598-4850
VL - 37
SP - 491
EP - 498
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 - 6
ER -