High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes

Abstract A wideband and high gain circularly polarised patch antenna has been introduced. The proposed antenna combines an aperture coupled feeding with a T‐slot, four metallic vias and a patch with a diagonal slot to present high gain and wide 3‐dB axial ratio bandwidth (BW) characteristics. In thi...

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Bibliographic Details
Main Authors: Rasoul Fakhte, Iman Aryanian
Format: Article
Language:English
Published: Wiley 2021-03-01
Series:IET Microwaves, Antennas & Propagation
Online Access:https://doi.org/10.1049/mia2.12060
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spelling doaj-1964a985dd3749919da5b89d13f523742021-07-14T13:26:03ZengWileyIET Microwaves, Antennas & Propagation1751-87251751-87332021-03-0115438939610.1049/mia2.12060High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modesRasoul Fakhte0Iman Aryanian1Iran Telecommunication Research Centre Tehran IranIran Telecommunication Research Centre Tehran IranAbstract A wideband and high gain circularly polarised patch antenna has been introduced. The proposed antenna combines an aperture coupled feeding with a T‐slot, four metallic vias and a patch with a diagonal slot to present high gain and wide 3‐dB axial ratio bandwidth (BW) characteristics. In this study, a rectangular patch (0.6 λ0 × 0.5 λ0 at f = 7.5 GHz) with a diagonal slot has been symmetrically located above the T‐slot at the height of 0.07 λ0. A WR90 waveguide with the length of 50 mm and a T‐slot in its extended outer wall has been used as a primary antenna that feeds the patch element. Four metallic vias with shunt inductive effects have been used to virtually enlarge radiating patch dimension, so they present a significant improvement in antenna gain, BW and axial ratio. The proposed antenna shows the BW of 30% with tgain of up to 12 dBi and an axial ratio BW of 21%. Due to its wideband, high gain, and wide 3‐dB axial ratio BW, this antenna is a good candidate for some applications, such as small satellites, and for the global positioning system the high gain, precision and flexibility of the system are crucial.https://doi.org/10.1049/mia2.12060
collection DOAJ
language English
format Article
sources DOAJ
author Rasoul Fakhte
Iman Aryanian
spellingShingle Rasoul Fakhte
Iman Aryanian
High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes
IET Microwaves, Antennas & Propagation
author_facet Rasoul Fakhte
Iman Aryanian
author_sort Rasoul Fakhte
title High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes
title_short High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes
title_full High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes
title_fullStr High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes
title_full_unstemmed High gain and wideband patch antenna with wide 3‐dB axial ratio bandwidth operating at TM01 and TM11 modes
title_sort high gain and wideband patch antenna with wide 3‐db axial ratio bandwidth operating at tm01 and tm11 modes
publisher Wiley
series IET Microwaves, Antennas & Propagation
issn 1751-8725
1751-8733
publishDate 2021-03-01
description Abstract A wideband and high gain circularly polarised patch antenna has been introduced. The proposed antenna combines an aperture coupled feeding with a T‐slot, four metallic vias and a patch with a diagonal slot to present high gain and wide 3‐dB axial ratio bandwidth (BW) characteristics. In this study, a rectangular patch (0.6 λ0 × 0.5 λ0 at f = 7.5 GHz) with a diagonal slot has been symmetrically located above the T‐slot at the height of 0.07 λ0. A WR90 waveguide with the length of 50 mm and a T‐slot in its extended outer wall has been used as a primary antenna that feeds the patch element. Four metallic vias with shunt inductive effects have been used to virtually enlarge radiating patch dimension, so they present a significant improvement in antenna gain, BW and axial ratio. The proposed antenna shows the BW of 30% with tgain of up to 12 dBi and an axial ratio BW of 21%. Due to its wideband, high gain, and wide 3‐dB axial ratio BW, this antenna is a good candidate for some applications, such as small satellites, and for the global positioning system the high gain, precision and flexibility of the system are crucial.
url https://doi.org/10.1049/mia2.12060
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AT imanaryanian highgainandwidebandpatchantennawithwide3dbaxialratiobandwidthoperatingattm01andtm11modes
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