Equivalent edge currents for the Physical Optics (PO) contribution to the edge diffraction are derived by choosing a proper coordinate system for a half plane. It is seen that these expressions for the PO component are free from singularities except at shadow and reflection boundaries on the Keller Cone. To find the total diffracted field, the expressions for the fringe contribution given earlier by Michaeli should be used along with the PO contribution obtained here. The procedure is applied to the problems of backscattering from square and triangular plates. Higher order diffractions are also accounted for by combining the equivalent currents with the Uniform Theory of Diffraction (UTD). The results obtained are compared with previous sol...
This article deals with the uniform asymptotic physical optics solution for the evaluation of the di...
The planar sheet structures of interest are the parallel resistive strip waveguide and rectangular m...
The canonical problem of plane wave diffraction by a wedge in the context of the spectral domain app...
Equivalent edge currents for the Physical Optics (PO) contribution to the edge diffraction are deriv...
The method of physical optics (PO) is a powerful algorithm for calculation of scattering and radiati...
In this work the scattering of plane waves from a finite sized perfectly conducting wedge as a funct...
The paper reviews some essential features of the physical optics method and demonstrates the need to...
Zur Korrektur des Felds der physikalischen Optik im Falle von Objekten mit Kanten werden die aequiva...
The extension of the Uniform Asymptotic Physical Optics approach to the three-dimensional diffractio...
This paper describes a proposed solution for the diffraction problem related to a plane wave inciden...
Approximate high-frequency expressions for the currents induced on a perfectly conducting plane angu...
This paper proposes a solution for predicting the electromagnetic field diffracted by the edge of a ...
On the assumption that the electric current and charge on a perfectly conducting sheet are integrabl...
The different scattering mechanisms that contribute to the radar cross of finite flat plates were id...
This article deals with the uniform asymptotic physical optics solution for the evaluation of the di...
The planar sheet structures of interest are the parallel resistive strip waveguide and rectangular m...
The canonical problem of plane wave diffraction by a wedge in the context of the spectral domain app...
Equivalent edge currents for the Physical Optics (PO) contribution to the edge diffraction are deriv...
The method of physical optics (PO) is a powerful algorithm for calculation of scattering and radiati...
In this work the scattering of plane waves from a finite sized perfectly conducting wedge as a funct...
The paper reviews some essential features of the physical optics method and demonstrates the need to...
Zur Korrektur des Felds der physikalischen Optik im Falle von Objekten mit Kanten werden die aequiva...
The extension of the Uniform Asymptotic Physical Optics approach to the three-dimensional diffractio...
This paper describes a proposed solution for the diffraction problem related to a plane wave inciden...
Approximate high-frequency expressions for the currents induced on a perfectly conducting plane angu...
This paper proposes a solution for predicting the electromagnetic field diffracted by the edge of a ...
On the assumption that the electric current and charge on a perfectly conducting sheet are integrabl...
The different scattering mechanisms that contribute to the radar cross of finite flat plates were id...
This article deals with the uniform asymptotic physical optics solution for the evaluation of the di...
The planar sheet structures of interest are the parallel resistive strip waveguide and rectangular m...
The canonical problem of plane wave diffraction by a wedge in the context of the spectral domain app...