DocumentCode :
1551303
Title :
Efficient method-of-moments formulation for the modeling of planar conductive layers in a shielded guided-wave structure
Author :
Khalil, Ahmed I. ; Yakovlev, Alexander B. ; Steer, Michael B.
Author_Institution :
Dept. of Electr. & Comput. Eng., North Carolina State Univ., Raleigh, NC, USA
Volume :
47
Issue :
9
fYear :
1999
fDate :
9/1/1999 12:00:00 AM
Firstpage :
1730
Lastpage :
1736
Abstract :
An electric-field integral-equation formulation discretized via the method of moments (MoM) is proposed for the analysis of arbitrarily shaped planar conductive layers in a shielded guided-wave structure. The method results in a generalized scattering matrix (GSM) for the planar structure and can be used with other GSM´s, derived using this or other techniques, to model cascaded structures in waveguide. The Kummer transformation is applied to accelerate slowly converging double series expansions of impedance matrix elements obtained in the MoM solution. In this transformation, the quasi-static part associated with a singularity of the electric-type Green´s function in the region of a conductive layer is extracted and evaluated in terms of modified Bessel functions, resulting in a dramatic reduction of terms in a double series summation. The proposed technique permits the modeling of a variety of conductive frequency-selective surfaces, including quasi-optical grids and patch arrays for application to spatial power combining
Keywords :
Bessel functions; Green´s function methods; S-matrix theory; convergence of numerical methods; electric field integral equations; electromagnetic shielding; frequency selective surfaces; impedance matrix; method of moments; waveguide theory; Bessel function; Green function; Kummer transformation; cascaded structure; convergence; double series expansion; electric field integral equation; electromagnetic analysis; frequency selective surface; generalized scattering matrix; impedance matrix; layered waveguide; method of moments model; patch array; planar conductive layer; quasi-optical grid; shielded guided wave structure; spatial power combiner; Acceleration; Electromagnetic analysis; Electromagnetic scattering; Electromagnetic waveguides; GSM; Moment methods; Planar waveguides; Submillimeter wave filters; Submillimeter wave technology; Transmission line matrix methods;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.788615
Filename :
788615
Link To Document :
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