IEEE Transactions on Geoscience and Remote Sensing · 1999 · 34 citations · 9 references
Numerical AnalysisEngineeringEffective Scattering ModelSubsurface Circular CylinderComputational ElectromagneticsComputational GeometryTwo-dimensional Subsurface ObjectGeometric ModelingPhysicsInverse Scattering TransformsInverse ProblemsRadarInverse ProblemNatural SciencesRadar ScatteringCivil EngineeringWave ScatteringLight ScatteringCircular CylinderHigh-frequency ApproximationSurface Modeling
The problem of the location and characterization of a two-dimensional (2-D) subsurface object is formulated as the inverse problem for an effective scattering model. An arbitrary finite-sized buried object is described as a subsurface circular cylinder with the radius, permittivity, and position of its center to be determined. The inversion is performed in a nonlinearized way, minimizing the discrepancy between the actual scattered field and that of the effective scattering model. A simple and quick solution for a circular cylinder embedded in a lossy half space is introduced. As far as numerical efficiency is concerned, the obtained approximate algorithm is comparable to the free-space solution. The location algorithm has been tested with the two-dimensional models of plastic antipersonnel land mines.
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Synthetic aperture radar interferometry
P. A. Rosen, S. Hensley, Ian Joughin et al. · Proceedings of the IEEE · 2000 · 2.6K citations
Synthetic aperture radar interferometry
Richard Bamler, Philipp Hartl · Inverse Problems · 1998 · 2K citations