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IEEE Transactions on Antennas and Propagation
Volume 47 Number 11, November 1999
Table of Contents for this issue
Complete paper in PDF format
Rigorous Combined Mode-Matching
Integral Equation Analysis of Horn Antennas
with Arbitrary Cross Section
Rainer Bunger, Member, IEEE, Ralf Beyer, and Fritz Arndt, Fellow, IEEE
Page 1641.
Abstract:
A combined rigorous method is presented for the analysis
of horn antennas with arbitrary cross section and general outer surface.
The horn taper is described by the mode-matching (MM) method where the
cross-section eigenvalue problem is solved by a two-dimensional (2-D)
finite element (FE) technique. For the exterior horn surface including
the radiating aperture, the application of the Kirchhoff-Huygens
principle yields two expressions for the admittance matrix which are
based on the electric (EFIE) and the magnetic (MFIE) field integral
equation, respectively. The equations are solved numerically by the
method of moments (MoM). For the preferred EFIE formulation, the
eigenvectors of the last waveguide taper section and RWG functions for
triangular patches are utilized as basis-functions for the magnetic or
electric surface current densities, respectively. The presented method
is verified by available reference values or measurements for a
waveguide radiator with a peripheral choke, a conical and a rectangular
horn. Its flexibility is demonstrated at the example of a conical ridged
waveguide horn.
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