DocumentCode :
1994
Title :
Analysis of Direct and Inverse Problems Related to Circular Waveguides Loaded With Inhomogeneous Lossy Dielectric Objects
Author :
Aydogan, Ahmet ; Akleman, Funda
Author_Institution :
Dept. of Electr. & Electron. Eng. Fac., Istanbul Tech. Univ., Istanbul, Turkey
Volume :
62
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
1291
Lastpage :
1300
Abstract :
An integral-equation-based analysis for direct and inverse problems related to circular waveguides loaded with inhomogeneous and arbitrarily shaped lossy dielectric material is introduced. The problem is formulated as a system of integral equations composed of the well-known data and object equations, which contain the dyadic Green´s function (DGF) of the empty circular waveguide. Both the direct and inverse algorithms are based on this 3-D system of equations. In the direct problem, the scattering parameters are calculated using the scattered electric fields caused by the inhomogeneous lossy dielectric objects located in circular waveguide, while in the inverse algorithm, the scattered fields are assumed to be known and used for the determination of the complex permittivity variation of the object loaded in the waveguide through a Newton-type iterative approach. In both algorithms, the integral equations are solved via a method-of-moments-based discretization, where the accurate integration of the DGF at each discrete 3-D cell is achieved by a special integration technique. The validity region and the reliability of the direct and inverse algorithms are examined analytically and numerically through elaborative examples.
Keywords :
Green´s function methods; Newton method; circular waveguides; dielectric materials; electric fields; integral equations; inverse problems; method of moments; permittivity; waveguide theory; 3D system of equation; DGF; Newton-type iterative approach; arbitrarily shaped lossy dielectric material; complex permittivity variation determination; direct problem analysis; discrete 3D cell; dyadic Green´s function; empty circular waveguide; inhomogeneous lossy dielectric objects; integral-equation-based analysis; inverse problems; method-of-moment-based discretization; object equations; reliability; scattered electric fields; scattering parameters; Equations; Hollow waveguides; Integral equations; Inverse problems; Loaded waveguides; Mathematical model; Direct problem; Newton method; inhomogeneous complex permittivity reconstruction; inverse problem; method of moments (MoM); partially loaded circular waveguide;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2014.2321334
Filename :
6814331
Link To Document :
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