DocumentCode :
1339221
Title :
Effects of a Coplanar Waveguide Biasing Network Built Into the Ground Plane on the Dispersion Characteristics of a Tunable Unit Cell With an Elliptical Patch and Multiple Vias
Author :
Matekovits, Ladislau ; De Sabata, Aldo ; Esselle, Karu P.
Author_Institution :
Dept. of Electron., Politec. di Torino, Turin, Italy
Volume :
10
fYear :
2011
fDate :
7/3/1905 12:00:00 AM
Firstpage :
1088
Lastpage :
1091
Abstract :
The effect of the biasing network (BN), formed by coplanar transmission lines (CPWs) built into the ground plane itself, on the dispersion characteristics of a tunable unit cell (UC) is investigated. The UC consists of an elliptical patch and multiple vias placed inside a parallel plate waveguide. One of the vias attached to a patch positioned on the top surface of a dielectric substrate connects the patch to the ground plane. Another via, symmetrically positioned with respect to the patch center, can be connected to the same ground plane or let to float depending on the state of a diode positioned at its base. The effect of the different components of the BN is analyzed step by step. For each intermediate configuration, the corresponding dispersion diagram (DD) is computed, allowing extraction of fundamental information on the influence of each part of the CPW circuit on the band-gap characteristics. The orientation of the BN is also discussed. The presented results can guide the dispersion engineering process when a tunable electromagnetic band-gap (EBG) structure is designed for a specific guided-wave application.
Keywords :
coplanar transmission lines; coplanar waveguides; parallel plate waveguides; CPW circuit; DD; UC; band-gap characteristics; coplanar transmission lines; coplanar waveguide biasing network; dielectric substrate; dispersion diagram; elliptical patch; ground plane; parallel plate waveguide; patch center; tunable EBG structure; tunable electromagnetic band-gap structure; tunable unit cell dispersion characteristics; Anisotropic magnetoresistance; Coplanar waveguides; Dispersion; Geometry; Photonic band gap; Surface impedance; Dispersion engineering; electromagnetic band-gap (EBG); parallel plate waveguide; periodic structure; reconfigurable; tuning;
fLanguage :
English
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
Publisher :
ieee
ISSN :
1536-1225
Type :
jour
DOI :
10.1109/LAWP.2011.2170653
Filename :
6034509
Link To Document :
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