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1

Department of Geophysical Engineering, Montana Tech of The University of Montana, Butte, MT 59701, USA

2

Department of Civil, Environmental, and Construction Engineering, University of Central Florida, 4000 Central Florida Blvd.; Orlando, FL 32816, USA

3

Geophysical Institute, University of Alaska Fairbanks, 903 Koyukuk Drive, P.O. Box 757320, Fairbanks, AK 99775-7320, USA





*

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Abstract This paper provides a review of the progress in regard to the InSAR remote sensing technique and its applications in earth and environmental sciences, especially in the past decade. Basic principles, factors, limits, InSAR sensors, available software packages for the generation of InSAR interferograms were summarized to support future applications. Emphasis was placed on the applications of InSAR in seismology, volcanology, land subsidence-uplift, landslide, glaciology, hydrology, and forestry sciences. It ends with a discussion of future research directions. View Full-Text

Keywords: InSAR; phase; interferogram; deformation; remote sensing InSAR; phase; interferogram; deformation; remote sensing





Autor: Xiaobing Zhou 1,* , Ni-Bin Chang 2 and Shusun Li 3

Fuente: http://mdpi.com/



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