Title :
Omnidirectional Cylindrical Dielectric Resonator Antenna With Dual Polarization
Author :
Zou, Longfang ; Abbott, Derek ; Fumeaux, Christophe
Author_Institution :
Sch. of Electr. & Electron. Eng., Univ. of Adelaide, Adelaide, SA, Australia
fDate :
7/4/1905 12:00:00 AM
Abstract :
This letter proposes an annular cylindrical dielectric resonator antenna (DRA) with two-port diversity realizing simultaneously omnidirectional horizontally and vertically polarized radiation patterns with low cross coupling. The horizontally and vertically polarized radiation patterns are achieved by exciting the orthogonal TE01δ and TM01δ modes in a single cylindrical dielectric resonator (DR). Due to the high Q-factor of the TE01δ mode, an air gap and multiple feeding lines are introduced to increase the impedance bandwidth. The proposed antenna provides an impedance bandwidth of 19.1% in the vertically polarized mode and an overlapping bandwidth of 7.4% in the horizontally polarized mode, with the overlapping band ranging from 3.78 to 4.07 GHz. Antenna diversity and multiple-input-multiple-output (MIMO) performance are examined in terms of envelope correlation coefficient and mean effective gain.
Keywords :
MIMO communication; antenna feeds; antenna radiation patterns; dielectric resonator antennas; electromagnetic wave polarisation; microwave antenna arrays; omnidirectional antennas; MIMO performance; Q-factor; air gap; annular cylindrical DRA; antenna diversity; dual polarization; frequency 3.78 GHz to 4.07 GHz; horizontally polarized mode; multiple feeding lines; multiple-input-multiple-output performance; omnidirectional cylindrical dielectric resonator antenna; omnidirectional horizontally polarized radiation patterns; two-port diversity; vertically polarized mode; vertically polarized radiation patterns; Antenna radiation patterns; Bandwidth; Dielectric resonator antennas; Dielectrics; Gain; Impedance; Resonant frequency; Dielectric resonator antenna (DRA); multifunction; polarization diversity;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2012.2199277