Title
Deriving Ice Motion Patterns in Mountainous Regions by Integrating the Intensity-Based Pixel-Tracking and Phase-Based D-InSAR and MAI Approaches: A Case Study of the Chongce Glacier.
Abstract
As a sensitive indicator of climate change, mountain glacier dynamics are of great concern, but the ice motion pattern of an entire glacier surface cannot be accurately and efficiently generated by the use of only phase-based or intensity-based methods with synthetic aperture radar (SAR) imagery. To derive the ice movement of the whole glacier surface with a high accuracy, an integrated approach combining differential interferometric SAR (D-InSAR), multi-aperture interferometry (MAI), and a pixel-tracking (PT) method is proposed, which could fully exploit the phase and intensity information recorded by the SAR sensor. The Chongce Glacier surface flow field is estimated with the proposed integrated approach. Compared with the traditional SAR-based methods, the proposed approach can determine the ice motion over a widely varying range of ice velocities with a relatively high accuracy. Its capability is proved by the detailed ice displacement pattern with the average accuracy of 0.2 m covering the entire Chongce Glacier surface, which shows a maximum ice movement of 4.9 m over 46 days. Furthermore, it is shown that the ice is in a quiescent state in the downstream part of the glacier. Therefore, the integrated approach presented in this paper could present us with a novel way to comprehensively and accurately understand glacier dynamics by overcoming the incoherence phenomenon, and has great potential for glaciology study.
Year
DOI
Venue
2016
10.3390/rs8070611
REMOTE SENSING
Keywords
Field
DocType
D-InSAR,multiple-aperture interferometry,pixel tracking,integrated strategy,ice motion field,entire glacier surface
Sea ice concentration,Glacier,Climate change,Interferometric synthetic aperture radar,Synthetic aperture radar,Remote sensing,Interferometry,Glaciology,Pixel,Geology
Journal
Volume
Issue
ISSN
8
7
2072-4292
Citations 
PageRank 
References 
0
0.34
0
Authors
6
Name
Order
Citations
PageRank
Shiyong Yan152.92
Zhixing Ruan273.43
Guang Liu3278.40
Ka-zhong Deng4163.16
Mingyang Lv521.86
Zbigniew Perski6494.56