Jul 2026· The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences· Vol XLIX-B3-2026, pp. 509-514· 0 citations· 2 references
Abstract
Abstract. Interferometric SAR (InSAR) techniques, particularly Persistent Scatterer Interferometry (PSI), have become essential for land deformation monitoring. However, phase unwrapping errors significantly impact the reliability of deformation measurements, especially in areas with high phase noise or rapid deformation. This paper introduces a back-to-back (B2B) approach that enhances PSI results through a direct phase integration of consecutive interferograms, combined with adaptive phase unwrapping error detection and correction. The methodology integrates coherence-based pixel selection, adaptive phase unwrapping with variable thresholds, spatial-temporal consistency checking, and interpolation. Validation across several mining sites confirms the method’s robustness. For example, at the Relave Talabre mine in Chile, the B2B approach increased measurement density by over 20% with respect to standard PSI, and improved temporal consistency between ascending and descending datasets. These results demonstrate that the B2B approach offers enhanced spatial coverage, more reliable phase unwrapping, and operational efficiency for large-scale deformation monitoring in mining environments.
Existing GNSS-reflectometry interferometric synthetic aperture radar (GNSS-R InSAR) elevation deformation monitoring methods derive interferometric phases from SAR images, causing measurement intervals to be constrained by the synthetic aperture duration and limiting their ability to capture rapid deformation. To overc...
Insufficient three-dimensional (3D) geolocation accuracy of interferometric synthetic aperture radar (InSAR) scatterers on dikes often hampers the distinction between the dike crest and slopes. This limitation hinders effective monitoring and interpretation of deformation associated with different dike structures using...
Jia-Cheng Xiong, Ling Chang, Xiu-Feng He et al.· Remote Sensing· 0 citations
Interferometric Synthetic Aperture Radar (InSAR) enables the measurement of ground deformation with high spatial coverage and frequent temporal sampling, making it a valuable tool for landslide monitoring in remote mountainous regions. However, in tropical mountainous environments, dense vegetation, steep topography, a...
Emanuel Castillo-Cardona, Stefania Valencia-Herrera, Exneyder A. Montoya-Araque et al.· Italian National Conference...· 0 citations
Synthetic Aperture Radar (SAR) backscatter serves as a key tool for tracking surface water dynamics; however, single-source data dependencies introduce systematic bias tied to the specific physical limitations of the signal. A primary challenge in SAR analysis is the backscatter ambiguity created by ‘water look-alike’...
David Festa, Florian Roth, Muhammed Hassaan et al.· Remote Sensing· 0 citations
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