Multitemporal monitoring of Karvina subsidence trough using Sentinel-1 and TerraSar-X interferometry

Satellite SAR interferometry (InSAR) allows to observe borders of subsidence troughs created in undermined areas. There is a possibility to evaluate a subsidence velocity in the accuracy of a mm/year for the stable reflectors of the radio signal, e.g. buildings. We apply Permanent Scatterers (PS) and Quasi-PS (QPS) techniques for monitoring of mine-caused subsidence in the Karvina area situated in the Czech part of Upper Silesian Basin. We use PS technique as effective for observation of displacements of built structures (e.g. buildings) and QPS for monitoring of spatio-temporal development of subsidence troughs. The results reveal information valuable for an identification of deviations from expected effects of mining activities on the land surface and for the infrastructure which are potentially affected by the subsidence. We perform the processing of Sentinel-1 and high resolution TerraSAR-X to find how the lower spatial resolution of Sentinel-1 SAR affects the reliability of results. The assets of these new sensors, especially the short revisit time, can overcome the basic limits of InSAR methods connected with temporal lags between available SAR images. In previous Karvina area datasets (ERS, Envisat, Alos satellites) the basic temporal step used to be around one month. During such temporal length significant changes occured in vegetation cover or in cultivated soil causing a loss of coherence of radar measurements. In addition to this, the amount of subsidence of Karvina troughs has often exceeded detection limits of the SAR systems. A significant increase of the reliability of evaluated subsidence also in areas with a moderate vegetation cover is expected with the launch of Sentinel-1B since the short-term interferograms would not be affected by a full decorrelation. ARTICLE INFO

[1]  Joong-Sun Won,et al.  Satellite observation of coal mining subsidence by persistent scatterer analysis , 2007 .

[2]  Xiaojing Li,et al.  Subsidence Monitoring over the Southern Coalfield, Australia Using both L-Band and C-Band SAR Time Series Analysis , 2016, Remote. Sens..

[3]  Javier Duro,et al.  Application of advanced InSAR techniques for the measurement of vertical and horizontal ground motion in longwall minings , 2013 .

[4]  R. Hanssen Radar Interferometry: Data Interpretation and Error Analysis , 2001 .

[5]  Charles Werner,et al.  Evaluation of TerraSAR-X DINSAR and IPTA for ground-motion monitoring , 2008 .

[6]  M. Lazecký Optimazation of satellite InSAR techniques for monitoring of substituente in the surroundings of Karvina mine-Lazy plant , 2013 .

[7]  Yuxiao Qin,et al.  Sentinel-1 Interferometry System in the High-Performance Computing Environment , 2017 .

[8]  Fabio Rocca,et al.  SAR monitoring of progressive and seasonal ground deformation using the permanent scatterers technique , 2003, IEEE Trans. Geosci. Remote. Sens..

[9]  A. Monti Guarnieri,et al.  Sentinel 1 SAR interferometry applications: The outlook for sub millimeter measurements , 2012 .

[10]  Eva Jiránková DATA COLLECTION FOR DEVELOPMENT OF ASSESSMENT METHODS OF FIRM ROOF FAILURE BASED ON MINE SURVEYING OBSERVATIONS SBĚR DAT PRO VÝVOJ METODY HODNOCENÍ PORUŠOVÁNÍ PEVNÉHO NADLOŽÍ NA ZÁKLADĚ DŮLNĚ MĚŘICKÝCH POZOROVÁNÍ , 2009 .

[11]  Núria Devanthéry,et al.  Persistent Scatterer Interferometry: A review , 2016 .

[12]  Teng Wang,et al.  Repeat-Pass SAR Interferometry With Partially Coherent Targets , 2012, IEEE Transactions on Geoscience and Remote Sensing.

[13]  Fabio Rocca,et al.  Nonlinear subsidence rate estimation using permanent scatterers in differential SAR interferometry , 2000, IEEE Trans. Geosci. Remote. Sens..

[14]  Specifics in the formation of substituence through in the Karvina part of the Ostrava-Karvina coalfield with the use radar interferometry , 2016 .

[15]  Alessandro Corsini,et al.  Characterization of Longwall Mining Induced Subsidence by Means of Automated Analysis of InSAR Time-Series , 2015 .

[16]  Urs Wegmüller,et al.  INTERFEROMETRIC MONITORING OF AN ACTIVE UNDERGROUND MINING FIELD WITH HIGH-RESOLUTION SAR SENSORS , 2008 .

[17]  Luke Bateson,et al.  Validation and intercomparison of Persistent Scatterers Interferometry: PSIC4 project results , 2009 .