Title :
Millimeter-Wave EBG-Based Aperture-Coupled Dielectric Resonator Antenna
Author :
Al-Hasan, Mu´ath J. ; Denidni, Tayeb A. ; Sebak, Abdel Razik
Author_Institution :
EMT-INRS, Univ. of Quebec, Montreal, QC, Canada
Abstract :
Design, fabrication and testing of millimeter-wave (MMW) dielectric resonator antenna (DRA) surrounded by electromagnetic band-gap (EBG) structure are presented. For this purpose, MMW mushroom-like, circular patch EBG (CP-EBG) cell is designed and fabricated. The propagation characteristics of the proposed CP-EBG structure are measured using the asymmetric microstrip line method. A cylindrical DRA incorporating the developed CP-EBG structure is then designed and its performance is evaluated with and without the CP-EBG around the 60 GHz bandwidth. Measurements show a significant improvement in the antenna radiation characteristics when it is surrounded by CP-EBG structure. A gain increase of up to 3.2 dBi is obtained while preserving the gain flatness over the suggested bandwidth ( ± 0.7 dB). An additional backlobe suppression of up to 6.5 dBi is achieved. Moreover, radiation toward substrate edges is significantly reduced.
Keywords :
antenna radiation patterns; antenna testing; dielectric resonator antennas; electromagnetic wave propagation; microstrip antennas; microstrip lines; millimetre wave antennas; performance evaluation; photonic band gap; CP-EBG cell; MMW; MMW mushroom-like cell; antenna radiation characteristics; antenna testing; asymmetric microstrip line method; backlobe suppression; circular patch EBG cell; cylindrical DRA; electromagnetic band-gap structure; millimeter-wave EBG-based aperture-coupled dielectric resonator antenna; propagation characteristics; Dielectric resonator antenna (DRA); electromagnetic band-gap (EBG); millimeter-wave (MMW);
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2013.2262667