DocumentCode :
57573
Title :
Wideband High-Gain EBG Resonator Antennas With Small Footprints and All-Dielectric Superstructures
Author :
Hashmi, Raheel M. ; Zeb, Basit Ali ; Esselle, Karu P.
Author_Institution :
Dept. of Eng., Macquarie Univ., Sydney, NSW, Australia
Volume :
62
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
2970
Lastpage :
2977
Abstract :
A novel method is presented to design single-feed high-gain EBG resonator antennas (ERAs) with significantly wider bandwidths. Dielectric contrast is introduced to 1-D EBG superstructures composed of unprinted dielectric slabs, and the thicknesses of each of these slabs is optimized to achieve a wideband defect mode in a unit-cell model. Next, antennas are designed and their superstructure areas are truncated to increase the antenna bandwidth and aperture efficiency while decreasing antenna footprint. We demonstrate that a small superstructure area increases the 3-dB bandwidth of ERAs significantly. A prototype ERA designed with a single feed and superstructure area as small as 1.5 λ0 ×1.5 λ0 has a measured 3-dB directivity bandwidth of 22% at a peak gain of 18.2 dBi. This prototype antenna was made out of three slabs of different dielectric constants, two of them touching each other. This prototype demonstrates more than 85% reduction in the ERA footprint alongside a drastic improvement in bandwidth over the 3%-4% measured bandwidth of the classical single-feed ERAs with unprinted slabs.
Keywords :
broadband antennas; dielectric resonators; photonic band gap; 1D EBG superstructure; all-dielectric superstructures; dielectric contrast; electromagnetic band gap structure; small footprint antenna; small superstructure area; unprinted dielectric slab; wideband defect mode; wideband high-gain EBG resonator antenna; Cavity resonators; Digital multimedia broadcasting; Metamaterials; Periodic structures; Slabs; Wideband; Broadband; Fabry–Perot cavity antenna; composite slab; electromagnetic band gap (EBG); high gain; partially reflecting surface (PRS); resonant-cavity antenna (RCA);
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2014.2314534
Filename :
6781574
Link To Document :
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