DocumentCode :
1795029
Title :
New dense dielectric patch array antenna for future 5G short-range communications
Author :
Haraz, Osama M. ; Elboushi, Ayman ; Sebak, Abdel-Razik
Author_Institution :
KACST Technol. Innovation Center in RF & Photonics (RFTONICS), King Saud Univ., Riyadh, Saudi Arabia
fYear :
2014
fDate :
13-16 July 2014
Firstpage :
1
Lastpage :
4
Abstract :
In this paper, new dense dielectric (DD) patch array antenna prototype operating at 28 GHz for the future fifth generation (5G) short-range wireless communications applications is presented. This array antenna is proposed and designed with a standard printed circuit board (PCB) process to be suitable for integration with radio-frequency/microwave circuitry. The proposed structure employs four circular shaped DD patch radiator antenna elements fed by a l-to-4 Wilkinson power divider surrounded by an electromagnetic bandgap (EBG) structure. The DD patch shows better radiation and total efficiencies compared with the metallic patch radiator. For further gain improvement, a dielectric layer of a superstrate is applied above the array antenna. The calculated impedance bandwidth of proposed array antenna ranges from 27.1 GHz to 29.5 GHz for reflection coefficient (Sn) less than -1OdB. The proposed design exhibits good stable radiation patterns over the whole frequency band of interest with a total realized gain more than 16 dBi. Due to the remarkable performance of the proposed array, it can be considered as a good candidate for 5G communication applications.
Keywords :
antenna radiation patterns; dielectric-loaded antennas; fifth generation systems; microstrip antenna arrays; microwave antenna arrays; photonic band gap; power dividers; printed circuits; 5G short-range wireless communications; DD patch array antenna; DD patch radiator antenna elements; EBG structure; PCB process; Wilkinson power divider; dense dielectric patch array antenna; dielectric layer; electromagnetic bandgap structure; frequency 27.1 GHz to 29.5 GHz; frequency 28 GHz; impedance bandwidth; metallic patch radiator; microwave circuitry; printed circuit board process; radio-frequency circuitry; reflection coefficient; Absorption; Antenna arrays; Antenna feeds; Attenuation; Decision support systems; Millimeter wave technology; Dense Dielectric (DD) patch; Wilkinson power divider; electromagnetic bandgap (EBG); fifth generation (5G) wireless communications; printed circuit board (PCB); superstrate;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Antenna Technology and Applied Electromagnetics (ANTEM), 2014 16th International Symposium on
Conference_Location :
Victoria, BC
Type :
conf
DOI :
10.1109/ANTEM.2014.6887689
Filename :
6887689
Link To Document :
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