A uniform geometrical theory of diffraction (UTD) solution is developed for the canonical problem of the electromagnetic (EM) scattering by an electrically large circular cylinder with a uniform impedance boundary condition (IBC), when it is illuminated by an obliquely incident high frequency plane wave. A solution to this canonical problem is first constructed in terms of an exact formulation involving a radially propagating eigenfunction expansion. The latter is converted into a circumferentially propagating eigenfunction expansion suited for large cylinders, via the Watson transform, which is expressed as an integral that is subsequently evaluated asymptotically, for high frequencies, in a uniform manner. The resulting solution is then e...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
The geometrical theory of diffraction (GTD) is employed to analyze the radiation from a perfectly-co...
Asymptotic/high-frequency solutions are developed for analyzing the non-specular scattering mechanis...
A UTD solution is developed for describing the scattering by a circular cylinder with an impedance b...
A UTD solution is developed for describing the scattering by a circular cylinder with an impedance b...
The scattering of obliquely incident electromagnetic waves by a perfectly conducting circular Cylind...
The scattering of obliquely incident electromagnetic waves by a perfectly conducting circular Cylind...
The scattering of obliquely incident electromagnetic waves by a perfectly conducting circular Cylind...
Rigorous uniform geometrical theory of diffraction (UTD) diffraction coefficients are presented for ...
In the scattering analysis of a circular cylindrical structure, the impedance boundary condition (IB...
Copyright @ 2011 IEEEWe shall consider the the problem of determining the scattered far wave field p...
A novel formulation for the surface impedance characterization is introduced for the canonical probl...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
Reverberation chambers are well known for providing a random-like electric field distribution. Detec...
The paper presents an approach to more accurate evaluation of electromagnetic fields scattered by co...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
The geometrical theory of diffraction (GTD) is employed to analyze the radiation from a perfectly-co...
Asymptotic/high-frequency solutions are developed for analyzing the non-specular scattering mechanis...
A UTD solution is developed for describing the scattering by a circular cylinder with an impedance b...
A UTD solution is developed for describing the scattering by a circular cylinder with an impedance b...
The scattering of obliquely incident electromagnetic waves by a perfectly conducting circular Cylind...
The scattering of obliquely incident electromagnetic waves by a perfectly conducting circular Cylind...
The scattering of obliquely incident electromagnetic waves by a perfectly conducting circular Cylind...
Rigorous uniform geometrical theory of diffraction (UTD) diffraction coefficients are presented for ...
In the scattering analysis of a circular cylindrical structure, the impedance boundary condition (IB...
Copyright @ 2011 IEEEWe shall consider the the problem of determining the scattered far wave field p...
A novel formulation for the surface impedance characterization is introduced for the canonical probl...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
Reverberation chambers are well known for providing a random-like electric field distribution. Detec...
The paper presents an approach to more accurate evaluation of electromagnetic fields scattered by co...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
The geometrical theory of diffraction (GTD) is employed to analyze the radiation from a perfectly-co...
Asymptotic/high-frequency solutions are developed for analyzing the non-specular scattering mechanis...