Potential of geosynchronous SAR interferometric measurements in estimating three-dimensional surface displacements

被引:0
作者
Wanji ZHENG [1 ]
Jun HU [1 ]
Wei ZHANG [2 ]
Changjiang YANG [1 ]
Zhiwei LI [1 ]
Jianjun ZHU [1 ]
机构
[1] School of Geosciences and Info-Physics, Central South University
[2] National Disaster Reduction Center, Ministry of Civil Affairs of the People's Republic of China
关键词
GEOSAR; 3D displacements; DInSAR; IGSO; random error; systematic error;
D O I
暂无
中图分类号
TN958 [雷达:按体制分];
学科分类号
080904 ; 0810 ; 081001 ; 081002 ; 081105 ; 0825 ;
摘要
The ability of differential interferometric synthetic aperture radar(DIn SAR) technology used for centimeter level deformation detection has been well-proved. Nevertheless, the applications of DIn SAR under the low Earth orbit(LEO) are limited to the line-of-sight(LOS) measurements, the limited observation area and the long revisited time. Geosynchronous SAR(GEO SAR), which runs in the height of 36000 km with the advantage of a short revisit time and a large observation area, is a potential approach to overcome the series problems in LEO SAR. This paper focuses on estimating three-dimensional(3D) displacements by using GEO SAR DIn SAR measurements acquired from multiple imaging geometries. Aiming to provide a normal solution for geologic hazard monitoring and relative geophysical application in the future, the errors induced by decorrelation noise, orbital ramp and ionospheric distortion are analyzed for the GEO SAR DIn SAR measurements. A series of experiments have been conducted to find the relationship between the 3D displacements and the DIn SAR observations which are provided with different noises and combinations of imaging geometries. The results reveal that 3D displacements can be expected from the combination of left-and right-looking GEO SAR DIn SAR measurements. In particular, the north-south solution can achieve centimeter and even millimeter level.
引用
收藏
页码:48 / 61
页数:14
相关论文
共 6 条
[1]  
Feasibility study of inclined geosynchronous SAR focusing using Beidou IGSO signals[J]. Xichao DONG,Cheng HU,Weiming TIAN,Tian ZHANG,Yuanhao LI.Science China(Information Sciences). 2016(12)
[2]  
Impacts of ionospheric scintillation on geosynchronous SAR focusing: preliminary experiments and analysis[J]. LI YuanHao,HU Cheng,DONG XiChao,TIAN WeiMing,LONG Teng.Science China(Information Sciences). 2015(10)
[3]  
Effect of orbital errors on the geosynchronous circular synthetic aperture radar imaging and interferometric processing[J]. Lei-lei KOU 1,2,Xiao-qing WANG 1,Mao-sheng XIANG 1,Jin-song CHONG 1,Min-hui ZHU 1 (1 National Key Laboratory of Microwave Imaging Technology,Institute of Electronics,Beijing 100190,China) (2 Graduate University of Chinese Academy of Sciences,Beijing 100190,China).Journal of Zhejiang University-Science C(Computers & Electronics). 2011(05)
[4]  
Three‐dimensional deformation mapping of a dike intrusion event in Sakurajima in 2015 by exploiting the right‐ and left‐looking ALOS‐2 InSAR[J] . Yu Morishita,Tomokazu Kobayashi,Hiroshi Yarai.Geophysical Research Letters . 2016 (9)
[5]  
Resolving three-dimensional surface displacements from InSAR measurements: A review[J] . J. Hu,Z.W. Li,X.L. Ding,J.J. Zhu,L. Zhang,Q. Sun.Earth-Science Reviews . 2014
[6]  
Internal deformation due to shear and tensile faults in a half-space .2 Okada Y. Bulletin of the Seismological Society of America . 1992