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Cylindrical EBG antenna for short range gigabit wireless communications at millimetre-wave bands

Cylindrical EBG antenna for short range gigabit wireless communications at millimetre-wave bands
Cylindrical EBG antenna for short range gigabit wireless communications at millimetre-wave bands
An omnidirectional millimetre-wave antenna based on a cylindrical electromagnetic bandgap (EBG) resonator is presented. The cylindrical woodpile is fabricated using the ceramic extrusion freeforming technique with high purity alumina powder. The designed antenna can achieve a narrow beam with 6.5deg measured half power beam-width in the elevation plane without using an array configuration. The overall antenna gain is approximately 5degdBi at 94.2degGHz, suitable for future short range gigabit wireless communications
0013-5194
136-138
Lee, Y.
0510575a-59cb-49be-a87a-46ea195a44e2
Lu, X.
8a249ba9-6273-4b53-8cf8-ffcd51be627a
Hao, Y.
c7c11617-f452-4f28-8a2b-9ced9c5416c8
Yang, S.
e0018adf-8123-4a54-b8dd-306c10ca48f1
Parini, C. G.
a74f1f21-2fdb-4e34-a217-a4486c27e687
Evans, J. R. G.
c5f05fc6-7fdc-4f8f-af7f-95725bb51ff0
Lee, Y.
0510575a-59cb-49be-a87a-46ea195a44e2
Lu, X.
8a249ba9-6273-4b53-8cf8-ffcd51be627a
Hao, Y.
c7c11617-f452-4f28-8a2b-9ced9c5416c8
Yang, S.
e0018adf-8123-4a54-b8dd-306c10ca48f1
Parini, C. G.
a74f1f21-2fdb-4e34-a217-a4486c27e687
Evans, J. R. G.
c5f05fc6-7fdc-4f8f-af7f-95725bb51ff0

Lee, Y., Lu, X., Hao, Y., Yang, S., Parini, C. G. and Evans, J. R. G. (2009) Cylindrical EBG antenna for short range gigabit wireless communications at millimetre-wave bands. Electronics Letters, 45 (3), 136-138. (doi:10.1049/el:20093192).

Record type: Article

Abstract

An omnidirectional millimetre-wave antenna based on a cylindrical electromagnetic bandgap (EBG) resonator is presented. The cylindrical woodpile is fabricated using the ceramic extrusion freeforming technique with high purity alumina powder. The designed antenna can achieve a narrow beam with 6.5deg measured half power beam-width in the elevation plane without using an array configuration. The overall antenna gain is approximately 5degdBi at 94.2degGHz, suitable for future short range gigabit wireless communications

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More information

Published date: January 2009
Organisations: Engineering Mats & Surface Engineerg Gp

Identifiers

Local EPrints ID: 164987
URI: https://eprints.soton.ac.uk/id/eprint/164987
ISSN: 0013-5194
PURE UUID: 379ef6fe-d0a1-4f58-90a3-ebb4bbd318c4
ORCID for S. Yang: ORCID iD orcid.org/0000-0002-3888-3211

Catalogue record

Date deposited: 07 Oct 2010 14:12
Last modified: 06 Jun 2018 12:33

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Contributors

Author: Y. Lee
Author: X. Lu
Author: Y. Hao
Author: S. Yang ORCID iD
Author: C. G. Parini
Author: J. R. G. Evans

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