We consider the problem of reconstructing the shape of perfectly conducting cylinders under the physical optics approximation. For direct scattering, physical optics provides small model errors when the scatterers are convex, smooth, have large radii of curvature as compared to the impinging wavelength, and are noninteracting. In this paper, we investigate whether these hypotheses can be relaxed for the inverse problem. In particular, we consider three classes of scatterers (circular cylinder with radius smaller than the wavelength, multiple cylinders, and a concave cylinder) and we show that for them the model error is provided by a multiplicative almost frequency-independent factor. Since this factor can be incorporated within the unknown distribution representing the scatterers' illuminated boundaries, then we are able to show that successful reconstructions also beyond the physical optics limits can be obtained.

Beyond physical optics SVD shape reconstruction of metallic cylinders / Pierri, R; Liseno, Angelo; Solimene, R; Soldovieri, F.. - In: IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION. - ISSN 0018-926X. - 54:2(2006), pp. 655-665. [10.1109/TAP.2005.863121]

Beyond physical optics SVD shape reconstruction of metallic cylinders

LISENO, ANGELO;
2006

Abstract

We consider the problem of reconstructing the shape of perfectly conducting cylinders under the physical optics approximation. For direct scattering, physical optics provides small model errors when the scatterers are convex, smooth, have large radii of curvature as compared to the impinging wavelength, and are noninteracting. In this paper, we investigate whether these hypotheses can be relaxed for the inverse problem. In particular, we consider three classes of scatterers (circular cylinder with radius smaller than the wavelength, multiple cylinders, and a concave cylinder) and we show that for them the model error is provided by a multiplicative almost frequency-independent factor. Since this factor can be incorporated within the unknown distribution representing the scatterers' illuminated boundaries, then we are able to show that successful reconstructions also beyond the physical optics limits can be obtained.
2006
Beyond physical optics SVD shape reconstruction of metallic cylinders / Pierri, R; Liseno, Angelo; Solimene, R; Soldovieri, F.. - In: IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION. - ISSN 0018-926X. - 54:2(2006), pp. 655-665. [10.1109/TAP.2005.863121]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/105897
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