Phase gradient approach to stacking interferograms

被引:235
作者
Sandwell, DT [1 ]
Price, EJ [1 ]
机构
[1] Univ Calif San Diego, Scripps Inst Oceanog, Inst Geophys & Planetary Phys, La Jolla, CA 92093 USA
关键词
D O I
10.1029/1998JB900008
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The phase gradient approach is used to construct averages and differences of interferograms without phase unwrapping. Our objectives for change detection are to increase fringe clarity and decrease errors due to tropospheric and ionospheric delay by averaging many interferograms. The standard approach requires phase unwrapping, scaling the phase according to the ratio of the perpendicular baseline, and finally forming the average or difference; however, unique phase unwrapping is usually not possible. Since the phase gradient due to topography is proportional to the perpendicular baseline, phase unwrapping is unnecessary prior to averaging or differencing. Phase unwrapping may be needed to interpret the results, but it is delayed until all of the largest topographic signals are removed. We demonstrate the method by averaging and differencing six interferograms having a suite of perpendicular baselines ranging from 18 to 406 m. Cross-spectral analysis of the difference between two Tandem interferograms provides estimates of spatial resolution, which are used to design prestack filters. A wide range of perpendicular baselines provides the best topographic recovery in terms of accuracy and coverage. Outside of mountainous areas the topography has a relative accuracy of better than 2 m. Residual interferograms (single interferogram minus stack) have tilts across the unwrapped phase that are typically 50 mm in both range and azimuth, reflecting both orbit error and atmospheric delay. Smaller-scale waves with amplitudes of 15 mm are interpreted as atmospheric lee waves. A few Global Positioning System (GPS) control points within a Game could increase the precision to similar to 20 mm for a single interferogram; further improvements may be achieved by stacking residual interferograms.
引用
收藏
页码:30183 / 30204
页数:22
相关论文
共 46 条
[1]   REFRACTION DISTORTIONS OF TRANSIONOSPHERIC RADIO SIGNALS CAUSED BY CHANGES IN A REGULAR IONOSPHERE AND BY TRAVELING IONOSPHERIC DISTURBANCES [J].
AFRAIMOVICH, EL ;
TEREKHOV, AI ;
UDODOV, MY ;
FRIDMAN, SV .
JOURNAL OF ATMOSPHERIC AND TERRESTRIAL PHYSICS, 1992, 54 (7-8) :1013-1020
[2]  
Bendat JS., 2011, RANDOM DATA ANAL MEA
[3]  
CURLANBDER JC, 1991, SYNTHETIC APERTURE R
[4]  
DIXON T, 1995, 95003 RSMAS JET PROP
[5]   Crustal deformation measurements using repeat-pass JERS 1 synthetic aperture radar interferometry near the Izu Peninsula, Japan [J].
Fujiwara, S ;
Rosen, PA ;
Tobita, M ;
Murakami, M .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1998, 103 (B2) :2411-2426
[6]   MAPPING SMALL ELEVATION CHANGES OVER LARGE AREAS - DIFFERENTIAL RADAR INTERFEROMETRY [J].
GABRIEL, AK ;
GOLDSTEIN, RM ;
ZEBKER, HA .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1989, 94 (B7) :9183-9191
[7]   THE WAVE-NUMBER SHIFT IN SAR INTERFEROMETRY [J].
GATELLI, F ;
GUARNIERI, AM ;
PARIZZI, F ;
PASQUALI, P ;
PRATI, C ;
ROCCA, F .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 1994, 32 (04) :855-865
[8]  
Ghiglia D. C., 1998, Two-Dimensional Phase Unwrapping: Theory, Algorithms, and Software
[9]   ROBUST 2-DIMENSIONAL WEIGHTED AND UNWEIGHTED PHASE UNWRAPPING THAT USES FAST TRANSFORMS AND ITERATIVE METHODS [J].
GHIGLIA, DC ;
ROMERO, LA .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA A-OPTICS IMAGE SCIENCE AND VISION, 1994, 11 (01) :107-117
[10]   ATMOSPHERIC LIMITATIONS TO REPEAT-TRACK RADAR INTERFEROMETRY [J].
GOLDSTEIN, R .
GEOPHYSICAL RESEARCH LETTERS, 1995, 22 (18) :2517-2520