Title :
Land subsidence detection using long interval ERS/SAR data pairs
Author :
Yonezawa, Chinatsu ; Takeuchi, Shoji
Author_Institution :
Remote Sensing Technol. Center of Japan, Tokyo, Japan
Abstract :
The actual possibility of extracting interferometric fringes from long time interval ERS-1,2/SAR data pairs was evaluated. One of the test sites is the eastern part of Saitama prefecture, which lies to the north of Tokyo, capital of Japan. Land subsidence caused by pumping water is reported in this area. Interferometric fringe pattern is not extracted from the data pairs with long baseline distances (more than 790 m), therefore, short baseline distance data pairs (less than 91 m) are used for the attempt. Coherences computed as the complex correlation coefficients between two SAR complex data reduce with time interval and indicate obvious temporal decorrelation. Interferometric fringes are obtained from the data pairs which interval are less than 1261 days even though their coherence are low. The data pairs which interval are 1739, 1774 and 2194 days and, not indicate fringe pattern in spite of their baseline distance are short enough. Detected phase difference patterns agree with the leveling results. The result of this study suggests the possibility to detect a long-term land subsidence using around 3.5 years interval ERS-1,2 SAR data pairs
Keywords :
geodesy; geophysical techniques; remote sensing by radar; spaceborne radar; synthetic aperture radar; tectonics; terrain mapping; topography (Earth); ERS; Japan; SAR; Saitama prefecture; Tokyo; change detection; complex correlation coefficients; data pair; fringe pattern; geodesy; geophysical measurement technique; image pair; image sequence; interferometric fringe; land surface topography; long interval; radar remote sensing; spaceborne radar; subsidence; synthetic aperture radar; temporal decorrelation; terrain mapping; vertical motion; Data mining; Decorrelation; Phase detection; Phase estimation; Remote sensing; Robustness; Surface topography; Synthetic aperture radar interferometry; Testing; Urban areas;
Conference_Titel :
Geoscience and Remote Sensing Symposium, 2000. Proceedings. IGARSS 2000. IEEE 2000 International
Conference_Location :
Honolulu, HI
Print_ISBN :
0-7803-6359-0
DOI :
10.1109/IGARSS.2000.857265