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Design and analysis of a novel compact high permittivity dielectric resonator antenna

Design and analysis of a novel compact high permittivity dielectric resonator antenna
Design and analysis of a novel compact high permittivity dielectric resonator antenna
A very compact and efficient dielectric resonator antenna is proposed and investigated. The novel structure is analyzed using two numerical methods and design guidelines are established. Moreover, it is shown that—by using very high permittivity materials and appropriate design of the resonator and its feeding structure—wide frequency coverage is possible even at cellular frequencies. Simulation results are reported showing the effectiveness of the proposed antenna structure.
Dielectric resonator antennas, numerical simulation, very high permittivity.
0018-9464
1052-1055
Rotaru, M.
c53c5038-2fed-4ace-8fad-9f95d4c95b7e
Sykulski, J.K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb
Rotaru, M.
c53c5038-2fed-4ace-8fad-9f95d4c95b7e
Sykulski, J.K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb

Rotaru, M. and Sykulski, J.K. (2009) Design and analysis of a novel compact high permittivity dielectric resonator antenna. IEEE Transactions on Magnetics, 45 (3), 1052-1055. (doi:10.1109/TMAG.2009.2012573).

Record type: Article

Abstract

A very compact and efficient dielectric resonator antenna is proposed and investigated. The novel structure is analyzed using two numerical methods and design guidelines are established. Moreover, it is shown that—by using very high permittivity materials and appropriate design of the resonator and its feeding structure—wide frequency coverage is possible even at cellular frequencies. Simulation results are reported showing the effectiveness of the proposed antenna structure.

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IEEEvol45no3March2009page1052.pdf - Version of Record
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More information

Published date: 12 March 2009
Additional Information: Digital Object Identifier 10.1109/TMAG.2009.2012573
Keywords: Dielectric resonator antennas, numerical simulation, very high permittivity.
Organisations: EEE

Identifiers

Local EPrints ID: 267184
URI: http://eprints.soton.ac.uk/id/eprint/267184
ISSN: 0018-9464
PURE UUID: 83bb4c3d-5985-4a2f-88f3-841d28e259ce
ORCID for J.K. Sykulski: ORCID iD orcid.org/0000-0001-6392-126X

Catalogue record

Date deposited: 12 Mar 2009 11:24
Last modified: 20 Jul 2019 01:28

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