Title :
A parallel-plate waveguide model of lossy microstrip lines
Author :
Kouzaev, G.A. ; Deen, M.J. ; Nikolova, N.K.
Author_Institution :
McMaster Univ., Hamilton, Ont., Canada
Abstract :
An improved semi-analytical model of a lossy microstrip transmission line is proposed. The model is based on the theory of the fundamental transverse magnetic mode of a lossy parallel-plate waveguide whose dielectric medium is assigned the effective permittivity of the respective lossless microstrip line. The complex propagation constant of the fundamental mode is computed by imposing the Leontovitch boundary condition at the upper and lower plates whose impedances take into account the thickness of the conductors and the current crowding effect. The dielectric loss is computed by perturbation formulas. The proposed model features high accuracy and computational efficiency at frequencies up to 100 GHz.
Keywords :
microstrip lines; parallel plate waveguides; waveguide theory; Leontovitch boundary condition; complex propagation constant; conductor loss; current crowding effect; dielectric loss; dielectric medium; effective permittivity; fundamental transverse magnetic mode; lossy microstrip lines; microstrip transmission line; parallel-plate waveguide model; perturbation formulas; Boundary conditions; Conductors; Dielectric losses; Impedance; Microstrip; Permittivity; Propagation constant; Propagation losses; Transmission line theory; Waveguide theory; Conductor loss; microstrip lines;
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2004.840970