DocumentCode :
1391789
Title :
Determination of simple equivalent circuits of interacting discontinuities in waveguides or transmission lines
Author :
Levy, Ralph
Author_Institution :
Levy Associates, La Jolla, CA, USA
Volume :
48
Issue :
10
fYear :
2000
fDate :
10/1/2000 12:00:00 AM
Firstpage :
1712
Lastpage :
1716
Abstract :
It is well known that the generalized scattering matrix (GSM) of a microwave network, which includes one or more ports supporting evanescent modes, is nonunitary. This has hindered the formation of equivalent circuits since it has not been evident how to form the impedance or admittance matrix. This paper describes how the problem has been overcome, resulting in a method for the formation of simple equivalent circuits of interacting closely spaced discontinuities in a waveguide. The n-port immittance matrix corresponding to the nonunitary GSM is formed by normalizing the imittance matrix to real or imaginary portal impedances. As an example, an equivalent circuit for the even mode of a waveguide short-slot coupler is presented, and the effect of the evanescent TE30 mode in the coupling region is clearly expressed by an evanescent-mode waveguide in parallel with one supporting the dominant propagating mode. The method should find wide applications to problems involving interactions in waveguides
Keywords :
S-matrix theory; equivalent circuits; waveguide couplers; waveguide discontinuities; waveguide theory; TE30 mode; closely spaced discontinuities; dominant propagating mode; equivalent circuits; evanescent modes; generalized scattering matrix; interacting discontinuities; n-port immittance matrix; portal impedances; waveguide short-slot coupler; Admittance; Coupling circuits; Equivalent circuits; GSM; Impedance; Portals; Scattering; Tellurium; Transmission line matrix methods; Waveguide discontinuities;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.873900
Filename :
873900
Link To Document :
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