Title :
Simple far-field model for lateral leakage in printed transmission lines
Author :
Kamel, A.H. ; Omar, A.S.
Author_Institution :
Univ. of Magdeburg, Germany
Abstract :
A simple far-field phased-line model for the lateral leakage (e.g. the surface-wave one) in printed transmission lines is presented. It is based on replacing the guiding strip(s) and/or guiding slot(s) by a phased line radiating in the background structure (usually a simple dielectric-slab guide or a partially filled parallel plate waveguide). Both full-line (infinitely extended) and half-line (semi-infinite) structures are considered. The model predicts the impossibility of real (bounded) modes that are faster than the corresponding background mode (into which leakage can take place) in both full-line and half-line structures. On the other hand, complex (leaky-wave) modes are shown to behave properly (improperly) outside their sector of definition in half-line (full-line) structures. Far-field distributions for a number of cases are given for the sake of illustration.
Keywords :
dielectric waveguides; microstrip lines; parallel plate waveguides; periodic structures; waveguide theory; complex modes; dielectric-slab guide; far-field model; full-line structures; half-line structures; infinitely extended structures; lateral leakage; partially filled parallel plate waveguide; phased-line model; printed transmission lines; semi-infinite structures; Degradation; Dielectrics; Microstrip; Periodic structures; Power transmission lines; Predictive models; Propagation constant; Strips; Transmission lines; Waveguide components;
Conference_Titel :
Microwave Symposium Digest, 2003 IEEE MTT-S International
Conference_Location :
Philadelphia, PA, USA
Print_ISBN :
0-7803-7695-1
DOI :
10.1109/MWSYM.2003.1212461