Formulations for scattering from the coated plate and the coated dihedral corner reflector are included. A coated plate model based upon the Uniform Theory of Diffraction (UTD) for impedance wedges was presented in the last report. In order to resolve inaccuracies and discontinuities in the predicted patterns using the UTD-based model, an improved model that uses more accurate diffraction coefficients is presented. A Physical Optics (PO) model for the coated dihedral corner reflector is presented as an intermediary step in developing a high-frequency model for this structure. The PO model is based upon the reflection coefficients for a metal-backed lossy material. Preliminary PO results for the dihedral corner reflector suggest that, in add...
Effective use of fractal-based metallo-dielectric structures for enhancing the radar cross-section (...
This paper examines polarimetric scattering characteristics caused by a dihedral corner reflector of...
The analysis of the backscatter cross section of a dihedral corner reflector, using Geometrical Theo...
Part 1 of this report continues the investigation, initiated in previous reports, of scattering from...
High-frequency techniques for Radar Cross Section (RCS) prediction of plate geometries and a physica...
Several different high-frequency methods for modeling the radar cross sections (RCSs) of plate geome...
The scattering in the interior regions of both square and triangular trihedral corner reflectors is ...
The scattering from coated, conducting structures, specifically the coated dihedral corner reflector...
Several high-frequency models for nonprincipal-plane scattering from a rectangular, perfectly conduc...
In order to treat high-frequency scattering from large and complex objects, numerous asymptotic simu...
The calculation of Radar Cross Section (RCS) of arbitrarily large perfectly conducting body is prese...
Two models of a flat plate for nonprincipal-plane scattering are explored. The first is a revised ve...
The scattering of electromagnetic waves from impedance structures is investigated, and current work ...
Using the geometrical theory of diffraction, the traditional method of high frequency scattering ana...
We make preliminary investigations on a new approach to reducing radar cross section (RCS) of conduc...
Effective use of fractal-based metallo-dielectric structures for enhancing the radar cross-section (...
This paper examines polarimetric scattering characteristics caused by a dihedral corner reflector of...
The analysis of the backscatter cross section of a dihedral corner reflector, using Geometrical Theo...
Part 1 of this report continues the investigation, initiated in previous reports, of scattering from...
High-frequency techniques for Radar Cross Section (RCS) prediction of plate geometries and a physica...
Several different high-frequency methods for modeling the radar cross sections (RCSs) of plate geome...
The scattering in the interior regions of both square and triangular trihedral corner reflectors is ...
The scattering from coated, conducting structures, specifically the coated dihedral corner reflector...
Several high-frequency models for nonprincipal-plane scattering from a rectangular, perfectly conduc...
In order to treat high-frequency scattering from large and complex objects, numerous asymptotic simu...
The calculation of Radar Cross Section (RCS) of arbitrarily large perfectly conducting body is prese...
Two models of a flat plate for nonprincipal-plane scattering are explored. The first is a revised ve...
The scattering of electromagnetic waves from impedance structures is investigated, and current work ...
Using the geometrical theory of diffraction, the traditional method of high frequency scattering ana...
We make preliminary investigations on a new approach to reducing radar cross section (RCS) of conduc...
Effective use of fractal-based metallo-dielectric structures for enhancing the radar cross-section (...
This paper examines polarimetric scattering characteristics caused by a dihedral corner reflector of...
The analysis of the backscatter cross section of a dihedral corner reflector, using Geometrical Theo...