Recently, a scalar formulation of the incremental theory of diffraction (ITD) has been introduced, which provides a self-consistent, high-frequency description of a wide class of scattering phenomena within a unified framework. In this paper, this method is extended to electromagnetic problems, The total field is represented as the sum of a generalized geometrical optics field plus incremental diffracted field contributions, Explicit dyadic expressions of incremental diffraction coefficients are derived for wedge-shaped configurations, The formulation of the field is uniformly valid at any incidence and observation aspects, including caustics and shadow boundaries of the corresponding rag field description. Numerical results are presented and compared with those obtained from different techniques.
Tiberio, R., Maci, S., Toccafondi, A. (1995). An Incremental Theory of Diffraction. Electromagnetic formulation. IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 43(1), 87-96 [10.1109/8.366356].
An Incremental Theory of Diffraction. Electromagnetic formulation
Tiberio, Roberto;Maci, Stefano;Toccafondi, Alberto
1995-01-01
Abstract
Recently, a scalar formulation of the incremental theory of diffraction (ITD) has been introduced, which provides a self-consistent, high-frequency description of a wide class of scattering phenomena within a unified framework. In this paper, this method is extended to electromagnetic problems, The total field is represented as the sum of a generalized geometrical optics field plus incremental diffracted field contributions, Explicit dyadic expressions of incremental diffraction coefficients are derived for wedge-shaped configurations, The formulation of the field is uniformly valid at any incidence and observation aspects, including caustics and shadow boundaries of the corresponding rag field description. Numerical results are presented and compared with those obtained from different techniques.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/45625
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