A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems

In this paper, a simple printed cross-dipole (PCD) antenna to achieve a right-hand circular polarization (RHCP) at the L/S-band for direction finding (DF) systems is presented. The radiating part of the antenna consists of two printed dipoles that interlock with each other and are mounted orthogonal...

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Main Authors: Kyei Anim, Bonghyuk Park, Hui Dong Lee, Seunghyun Jang, Sunwoo Kong, Young-Bae Jung
Format: Article
Language:English
Published: MDPI AG 2021-09-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/17/5966
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spelling doaj-9d94eb56ad9a4db8827567f0ab206be32021-09-09T13:57:03ZengMDPI AGSensors1424-82202021-09-01215966596610.3390/s21175966A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding SystemsKyei Anim0Bonghyuk Park1Hui Dong Lee2Seunghyun Jang3Sunwoo Kong4Young-Bae Jung5Electronics Engineering Department, Hanbat National University, Daejeon 34158, KoreaCommunication RF Research Section, Radio & Satellite Research Division, Electronics and Telecommunications Research Institute (ETRI), Daejeon 34129, KoreaCommunication RF Research Section, Radio & Satellite Research Division, Electronics and Telecommunications Research Institute (ETRI), Daejeon 34129, KoreaCommunication RF Research Section, Radio & Satellite Research Division, Electronics and Telecommunications Research Institute (ETRI), Daejeon 34129, KoreaCommunication RF Research Section, Radio & Satellite Research Division, Electronics and Telecommunications Research Institute (ETRI), Daejeon 34129, KoreaElectronics Engineering Department, Hanbat National University, Daejeon 34158, KoreaIn this paper, a simple printed cross-dipole (PCD) antenna to achieve a right-hand circular polarization (RHCP) at the L/S-band for direction finding (DF) systems is presented. The radiating part of the antenna consists of two printed dipoles that interlock with each other and are mounted orthogonally on a dual-layer printed reflector. To connect the feedlines of the dipole elements to the antenna’s feed network, which is located on the backside of the reflector, a through-hole signal via (THSV) is employed as the signal interconnection instead of the mainstream approach of using coaxial bead conductor. This feeding technique provides a degree of freedom to control the impedance of the signal path between the feedlines and the feed network in the numerical simulation for improved matching conditions. The proposed THSV extending through the dual-layer printed reflector is more reliable, durable, and mechanically robust to stabilize the matching conditions of the fabricated antenna in contrast to the coaxial-based approach that is more susceptible to impedance mismatch due to solder fatigue. Thus, the proposed PCD antenna offers advantages of broadband, flexible impedance matching, and fabrication ease. The antenna exhibits an impedance bandwidth (IBW) of 59% (1.59–2.93 GHz), a 3-dB axial ratio bandwidth (ARBW) of 57% (1.5–2.7 GHz), and a peak of 7.5 dB within the operating frequency band.https://www.mdpi.com/1424-8220/21/17/5966coaxial beadcross-dipole antennadirection findingdual-layer reflectorright-hand circular polarizationthrough-hole signal via
collection DOAJ
language English
format Article
sources DOAJ
author Kyei Anim
Bonghyuk Park
Hui Dong Lee
Seunghyun Jang
Sunwoo Kong
Young-Bae Jung
spellingShingle Kyei Anim
Bonghyuk Park
Hui Dong Lee
Seunghyun Jang
Sunwoo Kong
Young-Bae Jung
A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems
Sensors
coaxial bead
cross-dipole antenna
direction finding
dual-layer reflector
right-hand circular polarization
through-hole signal via
author_facet Kyei Anim
Bonghyuk Park
Hui Dong Lee
Seunghyun Jang
Sunwoo Kong
Young-Bae Jung
author_sort Kyei Anim
title A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems
title_short A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems
title_full A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems
title_fullStr A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems
title_full_unstemmed A Simple Printed Cross-Dipole Antenna with Modified Feeding Structure and Dual-Layer Printed Reflector for Direction Finding Systems
title_sort simple printed cross-dipole antenna with modified feeding structure and dual-layer printed reflector for direction finding systems
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-09-01
description In this paper, a simple printed cross-dipole (PCD) antenna to achieve a right-hand circular polarization (RHCP) at the L/S-band for direction finding (DF) systems is presented. The radiating part of the antenna consists of two printed dipoles that interlock with each other and are mounted orthogonally on a dual-layer printed reflector. To connect the feedlines of the dipole elements to the antenna’s feed network, which is located on the backside of the reflector, a through-hole signal via (THSV) is employed as the signal interconnection instead of the mainstream approach of using coaxial bead conductor. This feeding technique provides a degree of freedom to control the impedance of the signal path between the feedlines and the feed network in the numerical simulation for improved matching conditions. The proposed THSV extending through the dual-layer printed reflector is more reliable, durable, and mechanically robust to stabilize the matching conditions of the fabricated antenna in contrast to the coaxial-based approach that is more susceptible to impedance mismatch due to solder fatigue. Thus, the proposed PCD antenna offers advantages of broadband, flexible impedance matching, and fabrication ease. The antenna exhibits an impedance bandwidth (IBW) of 59% (1.59–2.93 GHz), a 3-dB axial ratio bandwidth (ARBW) of 57% (1.5–2.7 GHz), and a peak of 7.5 dB within the operating frequency band.
topic coaxial bead
cross-dipole antenna
direction finding
dual-layer reflector
right-hand circular polarization
through-hole signal via
url https://www.mdpi.com/1424-8220/21/17/5966
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