EUGENIA GIORGINI

Dottoressa di ricerca

ciclo: XXXVIII



Titolo della tesi: Integrated Use of InSAR and GNSS Techniques for Ground Deformation Monitoring

Understanding and monitoring the dynamics of the Earth’s surface is essential for scientific research, risk management, and sustainable land-use planning. Ground movements, whether natural or anthropogenic, including subsidence, landslides, tectonic uplift, and infrastructure-induced deformations, can significantly affect human settlements and critical infrastructure. This dissertation advances ground deformation monitoring through three complementary research themes. The first concerns the integration of Interferometric Synthetic Aperture Radar (InSAR) and Global Navigation Satellite Systems (GNSS), combining the dense spatial coverage of InSAR with the temporal continuity and reference accuracy of GNSS. Their joint use enables geophysically consistent deformation fields across multiple scales. The proposed framework was tested in Concepción (Chile) and extended to the Emilia-Romagna region (Italy), demonstrating the effectiveness of integrated approaches for regional calibration and territorial management. The second theme focuses on the development of tools for advanced InSAR time-series analysis, designed to characterize both linear and periodic deformation components. The TimeSAPS software, developed within this research, decomposes InSAR signals to detect subtle nonlinear and seasonal patterns, improving the interpretation of local processes such as structural responses or subsurface fluid movements. The third theme addresses the usability of InSAR data through the creation of InSAR suitability indices, which combine parameters of data quality, coherence, and geometry to identify areas that can be reliably monitored using radar interferometry. Together, these three research directions, integration, methodological innovation, and usability assessment, provide a comprehensive framework for precise and operational ground deformation monitoring, supporting hazard assessment, infrastructure management, and sustainable territorial planning.

Produzione scientifica

11573/1753830 - 2025 - Advancing InSAR analysis: TimeSAPS for linear and nonlinear displacement modeling
Giorgini, Eugenia; Tavasci, Luca; Vecchi, Enrica; Poluzzi, Luca; Gandolfi, Stefano - 01a Articolo in rivista
rivista: REMOTE SENSING APPLICATIONS ([Amsterdam] : Elsevier B.V.) pp. - - issn: 2352-9385 - wos: WOS:001542425500001 (1) - scopus: 2-s2.0-105011624349 (1)

11573/1726450 - 2024 - A Priori Estimation of Radar Satellite Interferometry’s Sensitivity for Landslide Monitoring in the Italian Emilia-Romagna Region
Vecchi, Enrica; Tavasci, Luca; Giorgini, Eugenia; Gandolfi, Stefano - 01a Articolo in rivista
rivista: REMOTE SENSING (Basel : Molecular Diversity Preservation International) pp. - - issn: 2072-4292 - wos: WOS:001277206500001 (10) - scopus: 2-s2.0-85199778272 (11)

11573/1726448 - 2023 - InSAR Monitoring Using Persistent Scatterer Interferometry (PSI) and Small Baseline Subset (SBAS) Techniques for Ground Deformation Measurement in Metropolitan Area of Concepción, Chile
Giorgini, Eugenia; Orellana, Felipe; Arratia, Camila; Tavasci, Luca; Montalva, Gonzalo; Moreno, Marcos; Gandolfi, Stefano - 01a Articolo in rivista
rivista: REMOTE SENSING (Basel : Molecular Diversity Preservation International) pp. - - issn: 2072-4292 - wos: WOS:001130526200001 (21) - scopus: 2-s2.0-85180617109 (25)

11573/1726452 - 2022 - 15 Years of the Italian GNSS Geodetic Reference Frame (RDN): Preliminary Analysis and Considerations
Giorgini, E.; Vecchi, E.; Poluzzi, L.; Tavasci, L.; Barbarella, M.; Gandolfi, S. - 04b Atto di convegno in volume
congresso: ASITA 2022 25th Italian Conference (Genova)
libro: Geomatics for Green and Digital Transition : 25th Italian Conference, ASITA 2022, Genova, Italy, June 20–24, 2022, Proceedings - ()

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