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Journal ArticleDOI

A uniform GTD analysis of the diffraction of electromagnetic waves by a smooth convex surface

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TLDR
In this article, a uniform geometrical theory of diffraction (GTD) solution for the diffraction of an arbitrary ray optical electromagnetic field by a smooth perfectly conducting convex surface is proposed.
Abstract
The problem of the diffraction of an arbitrary ray optical electromagnetic field by a smooth perfectly conducting convex surface is investigated. A pure ray optical solution to this problem has been developed by Keller within the framework of his geometrical theory of diffraction (GTD). However, the original GTD solution fails in the transition region adjacent to the shadow boundary where the diffracted field plays a significant role. A uniform GTD solution is developed which remains valid within the shadow boundary transition region, and which reduces to the GTD solution outside this transition region where the latter solution is valid. The construction of this uniform solution is based on an asymptotic solution obtained previously for a simpler canonical problem. The present uniform GTD solution can be conveniently and efficiently applied to many practical problems. Numerical results based on this uniform GTD solution are shown to agree very well with experiments.

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Citations
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Concepts and results for 3D digital terrain-based wave propagation models: an overview

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Book ChapterDOI

Techniques for High-Frequency Problems

TL;DR: In this article, the authors employ approximations based on high-frequency techniques for performing an efficient analysis of electromagnetic radiating systems that are large in terms of the wavelength, which is not the case for most of the existing techniques.
References
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Journal ArticleDOI

Geometrical Theory of Diffraction

TL;DR: The mathematical justification of the theory on the basis of electromagnetic theory is described, and the applicability of this theory, or a modification of it, to other branches of physics is explained.
Journal ArticleDOI

A uniform geometrical theory of diffraction for an edge in a perfectly conducting surface

TL;DR: In this article, a compact dyadic diffraction coefficient for electromagnetic waves obliquely incident on a curved edse formed by perfectly conducting curved plane surfaces is obtained, which is based on Keller's method of the canonical problem, which in this case is the perfectly conducting wedge illuminated by cylindrical, conical, and spherical waves.
Journal ArticleDOI

A uniform GTD solution for the radiation from sources on a convex surface

TL;DR: In this paper, a compact approximate asymptotic solution for the field radiated by an antenna on a perfectly conducting smooth convex surface was developed for the GPDD field.
Journal ArticleDOI

Diffraction of a convex cylinder

TL;DR: In this article, the leading term in the asymptotic expansion for large k = 2π/λ, of the fields reflected and diffracted by any convex cylinder is constructed.