Synthetic aperture radar interferometry
Интерферометрия синтетической апертурной радиолокации
2000-03-01
SCID: 54.1/kr8w4k89
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SAR interferometrySynthetic aperture radar interferometryapplications in cartography and geodesyphase of coherent radar signaltopography measurement
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Abstract (AI)
Synthetic aperture radar interferometry is an imaging technique for measuring the topography of a surface, its changes over time, and other changes in the detailed characteristic of the surface. By exploiting the phase of the coherent radar signal, interferometry has transformed radar remote sensing from a largely interpretive science to a quantitative tool, with applications in cartography, geodesy, land cover characterization, and natural hazards. This paper reviews the techniques of interferometry, systems and limitations, and applications in a rapidly growing area of science and engineering.
Key Findings
1
By using signal phase, interferometry converts radar remote sensing from qualitative interpretation into a quantitative tool.
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InSAR has enabled applications in cartography, geodesy, land cover characterization, and monitoring natural hazards.
3
Synthetic aperture radar interferometry (InSAR) measures surface topography, temporal changes, and detailed surface characteristics by exploiting the phase of coherent radar signals.
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The paper reviews InSAR techniques, system designs, limitations, and a broad range of scientific and engineering applications.
Research Object
Synthetic aperture radar interferometry (InSAR) as an imaging technique for measuring surface topography and temporal/characteristic changes
Research Subject
Measurement and quantitative characterization of surface topography, temporal deformation, and other detailed surface changes using phase of coherent SAR signals, including techniques, system limitations, and applications
Publication Details
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2000-03-01
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