A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna

This paper presents a novel low-profile high gain frequency reconfigurable patch antenna with unidirectional radiation pattern by using a grid-slotted patch with tunable varactors loading. The antenna consists of two stacked substrates and three metal layers. A grid-slotted patch with two tunable va...

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Main Authors: Yuan-Ming Cai, Ke Li, Yingzeng Yin, Steven Gao, Wei Hu, Luyu Zhao
Format: Article
Language:English
Published: IEEE 2018-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8398205/
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spelling doaj-a4227c4108ff401f97c190fe1de06e7b2021-03-29T21:05:05ZengIEEEIEEE Access2169-35362018-01-016363053631210.1109/ACCESS.2018.28509268398205A Low-Profile Frequency Reconfigurable Grid-Slotted Patch AntennaYuan-Ming Cai0https://orcid.org/0000-0002-6525-8577Ke Li1Yingzeng Yin2Steven Gao3Wei Hu4Luyu Zhao5National Key Laboratory of Antennas and Microwave Technology, Xidian University, Xi’an, ChinaSchool of Information Science and Technology, Northwest University, Xi’an, ChinaNational Key Laboratory of Antennas and Microwave Technology, Xidian University, Xi’an, ChinaSchool of Engineering and Digital Arts, University of Kent, Canterbury, U.K.National Key Laboratory of Antennas and Microwave Technology, Xidian University, Xi’an, ChinaNational Key Laboratory of Antennas and Microwave Technology, Xidian University, Xi’an, ChinaThis paper presents a novel low-profile high gain frequency reconfigurable patch antenna with unidirectional radiation pattern by using a grid-slotted patch with tunable varactors loading. The antenna consists of two stacked substrates and three metal layers. A grid-slotted patch with two tunable varactors is placed on the top layer, a microstrip line is placed in the middle of two substrates, and the ground plane is on the bottom layer. A single dc voltage applied on two varactors is used to control the working frequencies of the proposed antenna. By altering the bias voltage, the working frequency of the proposed antenna can be continuously changed within a wide range from 2.45 to 3.55 GHz. The antenna maintains broadside radiation and stable radiation pattern in all the operating modes. The measured antenna gain of the proposed antenna rises from 4.25 to 8.49 dBi with the working frequency increases from 2.45 to 3.55 GHz. Compared to other frequency-reconfigurable antennas available in the literature, the proposed antenna has advantages of a wide frequency tuning range over a bandwidth of 1.45:1, high frequency selectivity, low profile (0.016 free-space wavelength at 2.45 GHz), high gain, stable unidirectional pattern, simple structure, and low cost. These advantages make it a promising candidate for cognitive radio and future wireless communication systems.https://ieeexplore.ieee.org/document/8398205/Continuously tuningfrequency reconfigurable antennavaractors
collection DOAJ
language English
format Article
sources DOAJ
author Yuan-Ming Cai
Ke Li
Yingzeng Yin
Steven Gao
Wei Hu
Luyu Zhao
spellingShingle Yuan-Ming Cai
Ke Li
Yingzeng Yin
Steven Gao
Wei Hu
Luyu Zhao
A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna
IEEE Access
Continuously tuning
frequency reconfigurable antenna
varactors
author_facet Yuan-Ming Cai
Ke Li
Yingzeng Yin
Steven Gao
Wei Hu
Luyu Zhao
author_sort Yuan-Ming Cai
title A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna
title_short A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna
title_full A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna
title_fullStr A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna
title_full_unstemmed A Low-Profile Frequency Reconfigurable Grid-Slotted Patch Antenna
title_sort low-profile frequency reconfigurable grid-slotted patch antenna
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2018-01-01
description This paper presents a novel low-profile high gain frequency reconfigurable patch antenna with unidirectional radiation pattern by using a grid-slotted patch with tunable varactors loading. The antenna consists of two stacked substrates and three metal layers. A grid-slotted patch with two tunable varactors is placed on the top layer, a microstrip line is placed in the middle of two substrates, and the ground plane is on the bottom layer. A single dc voltage applied on two varactors is used to control the working frequencies of the proposed antenna. By altering the bias voltage, the working frequency of the proposed antenna can be continuously changed within a wide range from 2.45 to 3.55 GHz. The antenna maintains broadside radiation and stable radiation pattern in all the operating modes. The measured antenna gain of the proposed antenna rises from 4.25 to 8.49 dBi with the working frequency increases from 2.45 to 3.55 GHz. Compared to other frequency-reconfigurable antennas available in the literature, the proposed antenna has advantages of a wide frequency tuning range over a bandwidth of 1.45:1, high frequency selectivity, low profile (0.016 free-space wavelength at 2.45 GHz), high gain, stable unidirectional pattern, simple structure, and low cost. These advantages make it a promising candidate for cognitive radio and future wireless communication systems.
topic Continuously tuning
frequency reconfigurable antenna
varactors
url https://ieeexplore.ieee.org/document/8398205/
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