DocumentCode
1530019
Title
Estimating the Effect of Satellite Orbital Error Using Wavelet-Based Robust Regression Applied to InSAR Deformation Data
Author
Shirzaei, Manoochehr ; Walter, Thomas R.
Author_Institution
Berkeley Seismol. Lab., Univ. of California, Berkeley, CA, USA
Volume
49
Issue
11
fYear
2011
Firstpage
4600
Lastpage
4605
Abstract
Interferometric synthetic aperture radar data are often obtained on the basis of repeated satellite acquisitions. Errors in the satellite orbit determination, however, propagate to the data analysis and may even entirely obscure the interpretation. Many approaches have been developed to correct the effect of orbital error, which sometimes may even distort the signal. Phase contributions due to other sources, such as surface deformation, atmospheric delay, digital elevation model error, and noise, may reduce the accuracy of the orbital error estimation. Therefore, a more sophisticated approach for estimating the effect of orbital errors is required. In this paper, wavelet multiresolution analysis is employed to distinguish between the effects of orbital errors and other components (e.g., deformation signal). Next, a robust regression approach is applied to estimate the effect of orbit errors as a ramp. After describing the concept of this approach, we present a validation test using a synthetic data set. As in a real case study, the method is applied to an interferogram that was formed over the Tehran area in northern Iran. The validation test demonstrates that the orbital ramp can be estimated with a precision of 3 mm. Thus, a similar precision may be obtained in real cases such as the examined data set from over the Tehran area.
Keywords
geophysical signal processing; radar interferometry; regression analysis; remote sensing by radar; synthetic aperture radar; wavelet transforms; InSAR deformation data; Tehran area; atmospheric delay; data analysis; deformation signal; digital elevation model error; interferometric SAR; noise; northern Iran; orbital error effect correction; orbital error estimation accuracy; phase contributions; regression approach; satellite orbit determination; satellite orbital error effect estimation; surface deformation; synthetic aperture radar; wavelet based robust regression; wavelet multiresolution analysis; Coherence; Delay; Multiresolution analysis; Pixel; Robustness; Satellites; InSAR; orbital error; robust regression; wavelet analysis;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2011.2143419
Filename
5779729
Link To Document