A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications

A six-port 3×3 series-fed planar antenna array design for dual polarized X-band airborne synthetic aperture radar (SAR) applications is presented in this paper. The antenna array patches interconnected with series feeding one to another as the structure to realize directional radiation an...

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Main Authors: Venkata Kishore Kothapudi, Vijay Kumar
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8306944/
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author Venkata Kishore Kothapudi
Vijay Kumar
author_facet Venkata Kishore Kothapudi
Vijay Kumar
author_sort Venkata Kishore Kothapudi
collection DOAJ
description A six-port 3&#x00D7;3 series-fed planar antenna array design for dual polarized X-band airborne synthetic aperture radar (SAR) applications is presented in this paper. The antenna array patches interconnected with series feeding one to another as the structure to realize directional radiation and vertical/horizontal polarization. The patch elements are excited through 50 &#x03A9; microstrip line feeding in series with quarter wave transformer for good impedance characteristics. A six-port feeding allows selecting the direction of the traveling waves, and consequently the sense of linear (vertical and horizontal) polarization. A prototype of the antenna is fabricated and validated the proposed method. The dimensions of the fabricated prototype 3&#x00D7;3 array antenna are 3.256&#x03BB;g&#x00D7;3.256&#x03BB;g&#x00D7;0.0645&#x03BB;g (&#x03BB;g is guided wavelength at center frequency 9.65 GHz). The measured S<sub>11</sub> &lt;; -10 dB reflection bandwidths are 1.4% at each port. Furthermore, an interport and intraport isolation S21&lt;;-25 dB was also achieved across the operation band. The measured peak gains are higher than 11.5 dBi with 90% efficiency for all individual ports/polarizations V1, V2, V3 H1, H2, and H3). In order to satisfy the different performance requirement of series-fed array antenna, such as realized gain, radiation efficiency, side lobe level, half power beam width and front to back ratio are also examined. Measured results of an antenna prototype successfully validate the concept. The proposed antenna is found suitable for dual polarized airborne SAR applications.
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spelling doaj.art-494427c2be7e4f64a3a088df9e69915b2022-12-21T23:03:17ZengIEEEIEEE Access2169-35362018-01-016120011200710.1109/ACCESS.2018.28102338306944A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar ApplicationsVenkata Kishore Kothapudi0https://orcid.org/0000-0002-6247-5461Vijay Kumar1Department of Communication Engineering, School of Electronics Engineering, VIT University, Vellore, IndiaDepartment of Communication Engineering, School of Electronics Engineering, VIT University, Vellore, IndiaA six-port 3&#x00D7;3 series-fed planar antenna array design for dual polarized X-band airborne synthetic aperture radar (SAR) applications is presented in this paper. The antenna array patches interconnected with series feeding one to another as the structure to realize directional radiation and vertical/horizontal polarization. The patch elements are excited through 50 &#x03A9; microstrip line feeding in series with quarter wave transformer for good impedance characteristics. A six-port feeding allows selecting the direction of the traveling waves, and consequently the sense of linear (vertical and horizontal) polarization. A prototype of the antenna is fabricated and validated the proposed method. The dimensions of the fabricated prototype 3&#x00D7;3 array antenna are 3.256&#x03BB;g&#x00D7;3.256&#x03BB;g&#x00D7;0.0645&#x03BB;g (&#x03BB;g is guided wavelength at center frequency 9.65 GHz). The measured S<sub>11</sub> &lt;; -10 dB reflection bandwidths are 1.4% at each port. Furthermore, an interport and intraport isolation S21&lt;;-25 dB was also achieved across the operation band. The measured peak gains are higher than 11.5 dBi with 90% efficiency for all individual ports/polarizations V1, V2, V3 H1, H2, and H3). In order to satisfy the different performance requirement of series-fed array antenna, such as realized gain, radiation efficiency, side lobe level, half power beam width and front to back ratio are also examined. Measured results of an antenna prototype successfully validate the concept. The proposed antenna is found suitable for dual polarized airborne SAR applications.https://ieeexplore.ieee.org/document/8306944/Series-fedantenna arrayslinear polarizationside lobe level (SLL)front to back ratio (FTBR)airborne synthetic aperture radar (ASAR)
spellingShingle Venkata Kishore Kothapudi
Vijay Kumar
A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications
IEEE Access
Series-fed
antenna arrays
linear polarization
side lobe level (SLL)
front to back ratio (FTBR)
airborne synthetic aperture radar (ASAR)
title A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications
title_full A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications
title_fullStr A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications
title_full_unstemmed A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications
title_short A 6-Port Two-Dimensional $3\times 3$ Series-Fed Planar Array Antenna for Dual-Polarized X-Band Airborne Synthetic Aperture Radar Applications
title_sort 6 port two dimensional 3 times 3 series fed planar array antenna for dual polarized x band airborne synthetic aperture radar applications
topic Series-fed
antenna arrays
linear polarization
side lobe level (SLL)
front to back ratio (FTBR)
airborne synthetic aperture radar (ASAR)
url https://ieeexplore.ieee.org/document/8306944/
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