IEEE Transactions on Aerospace and Electronic Systems · 2010 · 160 citations · 22 references
EngineeringGeometryBistatic SarBistatic Parametric ModelsImaging RadarRadar Signal ProcessingComputational ElectromagneticsComputational GeometryGeometric ModelingSynthetic Aperture RadarCanonical ShapesInverse Scattering TransformsInverse ProblemsRadar ApplicationRadarNatural SciencesRadar ScatteringRadar AperturesRemote SensingRadar Image Processing
This paper develops three-dimensional (3D), bistatic parametric models that describe canonical radar scattering responses of several geometric objects. These models find use in inverse scattering-based processing of high-frequency radar returns. Canonical feature models are useful for extracting geometry from synthetic-aperture radar (SAR) scattering measurements and as feature primitives for automatic target recognition (ATR) and scene visualization. Previous work has considered monostatic feature models for two-dimensional (2D) radar processing; we extend this work to consider bistatic and 3D radar apertures. In the work presented here, we generalize geometric theory of diffraction (GTD) solutions for several scattering mechanisms in a plane. Products of these planar mechanisms in azimuth and elevation are used to produce 3D bistatic scattering models for six canonical shapes: a rectangular plate, dihedral, trihedral, cylinder, top-hat, and sphere. The derived models are characterized by a small number of parameters, and are shown to agree with results obtained from high-frequency, asymptotic scattering simulations.
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Geometrical Theory of Diffraction*
Joseph B. Keller · Journal of the Optical Society of America · 1962 · 3K citations
Engineering, Geometry, Wave Optic +20
A parametric model for synthetic aperture radar measurements
M.J. Gerry, Lee C. Potter, I.J. Gupta et al. · IEEE Transactions on Antennas and Propagation · 1999 · 328 citations
Feature motivated polarization scattering matrix decomposition
William L. Cameron, L.K. Leung · 2002 · 198 citations