Feather-shaped super wideband MIMO antenna

Two configurations of a modified feather-shaped antenna element are proposed for super wideband (SWB) multiple-input multiple-output (MIMO) applications. The antenna element geometry comprises of a circular slot-loaded feather-shaped radiator and rectangular notch-loaded quarter elliptical coplanar...

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Published inInternational journal of microwave and wireless technologies Vol. 13; no. 1; pp. 94 - 102
Main Author Singhal, Sarthak
Format Journal Article
LanguageEnglish
Published Cambridge, UK Cambridge University Press 01.02.2021
Subjects
Online AccessGet full text
ISSN1759-0787
1759-0795
DOI10.1017/S1759078720000549

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Abstract Two configurations of a modified feather-shaped antenna element are proposed for super wideband (SWB) multiple-input multiple-output (MIMO) applications. The antenna element geometry comprises of a circular slot-loaded feather-shaped radiator and rectangular notch-loaded quarter elliptical coplanar waveguide ground plane. An operating bandwidth of 4.4–51.5 GHz with inter-port isolation, S21 ≥ 15 dB for spatial diversity configuration, and 3.8–51.5 GHz with S21 ≥ 15 dB in pattern diversity configuration are achieved. The footprints of the antenna configurations are 17 × 33 and 31 × 31 mm2. Both configurations exhibited an envelope correlation coefficient of <−20 dB. The proposed MIMO configurations are fabricated and experimentally validated. The designed antenna configurations are SWB and compact.
AbstractList Two configurations of a modified feather-shaped antenna element are proposed for super wideband (SWB) multiple-input multiple-output (MIMO) applications. The antenna element geometry comprises of a circular slot-loaded feather-shaped radiator and rectangular notch-loaded quarter elliptical coplanar waveguide ground plane. An operating bandwidth of 4.4–51.5 GHz with inter-port isolation, S 21 ≥ 15 dB for spatial diversity configuration, and 3.8–51.5 GHz with S 21 ≥ 15 dB in pattern diversity configuration are achieved. The footprints of the antenna configurations are 17 × 33 and 31 × 31 mm 2 . Both configurations exhibited an envelope correlation coefficient of <−20 dB. The proposed MIMO configurations are fabricated and experimentally validated. The designed antenna configurations are SWB and compact.
Two configurations of a modified feather-shaped antenna element are proposed for super wideband (SWB) multiple-input multiple-output (MIMO) applications. The antenna element geometry comprises of a circular slot-loaded feather-shaped radiator and rectangular notch-loaded quarter elliptical coplanar waveguide ground plane. An operating bandwidth of 4.4–51.5 GHz with inter-port isolation, S21 ≥ 15 dB for spatial diversity configuration, and 3.8–51.5 GHz with S21 ≥ 15 dB in pattern diversity configuration are achieved. The footprints of the antenna configurations are 17 × 33 and 31 × 31 mm2. Both configurations exhibited an envelope correlation coefficient of <−20 dB. The proposed MIMO configurations are fabricated and experimentally validated. The designed antenna configurations are SWB and compact.
Author Singhal, Sarthak
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  organization: Department of Electronics & Communication Engineering, Malaviya National Institute of Technology, Jaipur, Rajasthan 302017, India
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Keywords super wideband applications
coplanar waveguide feeding
Feather shaped monopole
multiple input multiple output antenna
Language English
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Snippet Two configurations of a modified feather-shaped antenna element are proposed for super wideband (SWB) multiple-input multiple-output (MIMO) applications. The...
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SubjectTerms Antenna Design, Modelling and Measurements
Antennas
Bandwidths
Broadband
Communication
Configurations
Coplanar waveguides
Correlation coefficients
Design
Feathers
Ground plane
Radiators
Spectrum allocation
Wireless networks
Title Feather-shaped super wideband MIMO antenna
URI https://www.cambridge.org/core/product/identifier/S1759078720000549/type/journal_article
https://www.proquest.com/docview/2476488948
Volume 13
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