A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna

In this study, a novel ultrawideband (UWB) dielectric ring resonator (DRR) antenna has been proposed. DRR antennas include a single monopole antenna in the center of a ground plane and a dielectric with a symmetric structure around the monopole. This structure will lead to ultrawide band antenna. Ho...

Full description

Bibliographic Details
Main Authors: Mehdi Ghorbani, Habib Ghorbaninejad
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2021/8069873
id doaj-78f85618606e4c6ea415958bdf0707ba
record_format Article
spelling doaj-78f85618606e4c6ea415958bdf0707ba2021-07-26T00:34:52ZengHindawi LimitedMathematical Problems in Engineering1563-51472021-01-01202110.1155/2021/8069873A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator AntennaMehdi Ghorbani0Habib Ghorbaninejad1Department of Electrical EngineeringDepartment of Electrical EngineeringIn this study, a novel ultrawideband (UWB) dielectric ring resonator (DRR) antenna has been proposed. DRR antennas include a single monopole antenna in the center of a ground plane and a dielectric with a symmetric structure around the monopole. This structure will lead to ultrawide band antenna. However, it is still possible to enhance the antenna bandwidth. In this study, we combine the DRR structure with an array antenna. The proposed antenna includes a circular array of four triangle resonators, which is rotated around the center of the triangle base to form a gear-shaped ring resonator antenna. In this design, characteristics of all these antennas are combined to enhance the antenna bandwidth including triangular dielectric resonator, circular array antenna, dielectric ring resonator structure, and a quarter-wave electric monopole. Triangular dielectric resonator antennas are wideband and in small size. Ring resonator antennas are inherently ultrawideband. Quarter-wave electric monopole and circular array structure can also enhance antenna bandwidth. This novel shape of the DRR antenna possesses the wider impedance bandwidth compared to similar works. Impedance bandwidth is 150% (5.2–36.1 GHz), and the bandwidth ratio is 1 : 6.9, which is much greater than earlier reports.http://dx.doi.org/10.1155/2021/8069873
collection DOAJ
language English
format Article
sources DOAJ
author Mehdi Ghorbani
Habib Ghorbaninejad
spellingShingle Mehdi Ghorbani
Habib Ghorbaninejad
A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna
Mathematical Problems in Engineering
author_facet Mehdi Ghorbani
Habib Ghorbaninejad
author_sort Mehdi Ghorbani
title A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna
title_short A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna
title_full A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna
title_fullStr A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna
title_full_unstemmed A Novel Ultrawideband Gear-Shaped Dielectric Ring Resonator Antenna
title_sort novel ultrawideband gear-shaped dielectric ring resonator antenna
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1563-5147
publishDate 2021-01-01
description In this study, a novel ultrawideband (UWB) dielectric ring resonator (DRR) antenna has been proposed. DRR antennas include a single monopole antenna in the center of a ground plane and a dielectric with a symmetric structure around the monopole. This structure will lead to ultrawide band antenna. However, it is still possible to enhance the antenna bandwidth. In this study, we combine the DRR structure with an array antenna. The proposed antenna includes a circular array of four triangle resonators, which is rotated around the center of the triangle base to form a gear-shaped ring resonator antenna. In this design, characteristics of all these antennas are combined to enhance the antenna bandwidth including triangular dielectric resonator, circular array antenna, dielectric ring resonator structure, and a quarter-wave electric monopole. Triangular dielectric resonator antennas are wideband and in small size. Ring resonator antennas are inherently ultrawideband. Quarter-wave electric monopole and circular array structure can also enhance antenna bandwidth. This novel shape of the DRR antenna possesses the wider impedance bandwidth compared to similar works. Impedance bandwidth is 150% (5.2–36.1 GHz), and the bandwidth ratio is 1 : 6.9, which is much greater than earlier reports.
url http://dx.doi.org/10.1155/2021/8069873
work_keys_str_mv AT mehdighorbani anovelultrawidebandgearshapeddielectricringresonatorantenna
AT habibghorbaninejad anovelultrawidebandgearshapeddielectricringresonatorantenna
AT mehdighorbani novelultrawidebandgearshapeddielectricringresonatorantenna
AT habibghorbaninejad novelultrawidebandgearshapeddielectricringresonatorantenna
_version_ 1721282334265704448