UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis

This paper presents the design of a printed step-type monopole antenna for biological tissue analysis and medical imaging applications in the microwave frequency range. The design starts from a very simple and widely known rectangular monopole antenna, and different modifications to the antenna geom...

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Main Authors: Andrea Martínez-Lozano, Carolina Blanco-Angulo, Héctor García-Martínez, Roberto Gutiérrez-Mazón, Germán Torregrosa-Penalva, Ernesto Ávila-Navarro, José María Sabater-Navarro
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Electronics
Subjects:
Online Access:https://www.mdpi.com/2079-9292/10/3/304
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spelling doaj-9a72876d9b0d4a38b38d394800cb0e4d2021-01-28T00:03:13ZengMDPI AGElectronics2079-92922021-01-011030430410.3390/electronics10030304UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue AnalysisAndrea Martínez-Lozano0Carolina Blanco-Angulo1Héctor García-Martínez2Roberto Gutiérrez-Mazón3Germán Torregrosa-Penalva4Ernesto Ávila-Navarro5José María Sabater-Navarro6Department of Materials Science, Optical and Electronic Technology, University Miguel Hernández of Elche, 03202 Elche, SpainDepartment of Materials Science, Optical and Electronic Technology, University Miguel Hernández of Elche, 03202 Elche, SpainDepartment of Materials Science, Optical and Electronic Technology, University Miguel Hernández of Elche, 03202 Elche, SpainDepartment of Communications Engineering, University Miguel Hernández of Elche, 03202 Elche, SpainDepartment of Communications Engineering, University Miguel Hernández of Elche, 03202 Elche, SpainDepartment of Materials Science, Optical and Electronic Technology, University Miguel Hernández of Elche, 03202 Elche, SpainDepartment of Systems Engineering and Automation, University Miguel Hernández of Elche, 03202 Elche, SpainThis paper presents the design of a printed step-type monopole antenna for biological tissue analysis and medical imaging applications in the microwave frequency range. The design starts from a very simple and widely known rectangular monopole antenna, and different modifications to the antenna geometry are made in order to increase the bandwidth. The antenna dimensions are optimized by means of a parametric analysis of each dimension using a 3-D electromagnetic simulator based on the finite element method. The optimized antenna, with final dimensions of 40 × 36 mm<sup>2</sup>, is manufactured onto a low-cost FR4 (fiber glass epoxy) substrate. The characteristics of the antenna have been measured inside an anechoic chamber, obtaining an omnidirectional radiation pattern and a working frequency range between 2.7 GHz and 11.4 GHz, which covers the UWB frequencies and enables the use of the antenna in medical imaging applications. Finally, the behaviour of four of these antennas located around a realistic breast model, made with biocompatible materials, has been analysed with the electromagnetic simulator, obtaining good results and demonstrating the usefulness of the designed antenna in the proposed application.https://www.mdpi.com/2079-9292/10/3/304biological material characterizationmicrowave imagingprinted monopoleslotsstepped antennaUWB antenna
collection DOAJ
language English
format Article
sources DOAJ
author Andrea Martínez-Lozano
Carolina Blanco-Angulo
Héctor García-Martínez
Roberto Gutiérrez-Mazón
Germán Torregrosa-Penalva
Ernesto Ávila-Navarro
José María Sabater-Navarro
spellingShingle Andrea Martínez-Lozano
Carolina Blanco-Angulo
Héctor García-Martínez
Roberto Gutiérrez-Mazón
Germán Torregrosa-Penalva
Ernesto Ávila-Navarro
José María Sabater-Navarro
UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis
Electronics
biological material characterization
microwave imaging
printed monopole
slots
stepped antenna
UWB antenna
author_facet Andrea Martínez-Lozano
Carolina Blanco-Angulo
Héctor García-Martínez
Roberto Gutiérrez-Mazón
Germán Torregrosa-Penalva
Ernesto Ávila-Navarro
José María Sabater-Navarro
author_sort Andrea Martínez-Lozano
title UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis
title_short UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis
title_full UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis
title_fullStr UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis
title_full_unstemmed UWB-Printed Rectangular-Based Monopole Antenna for Biological Tissue Analysis
title_sort uwb-printed rectangular-based monopole antenna for biological tissue analysis
publisher MDPI AG
series Electronics
issn 2079-9292
publishDate 2021-01-01
description This paper presents the design of a printed step-type monopole antenna for biological tissue analysis and medical imaging applications in the microwave frequency range. The design starts from a very simple and widely known rectangular monopole antenna, and different modifications to the antenna geometry are made in order to increase the bandwidth. The antenna dimensions are optimized by means of a parametric analysis of each dimension using a 3-D electromagnetic simulator based on the finite element method. The optimized antenna, with final dimensions of 40 × 36 mm<sup>2</sup>, is manufactured onto a low-cost FR4 (fiber glass epoxy) substrate. The characteristics of the antenna have been measured inside an anechoic chamber, obtaining an omnidirectional radiation pattern and a working frequency range between 2.7 GHz and 11.4 GHz, which covers the UWB frequencies and enables the use of the antenna in medical imaging applications. Finally, the behaviour of four of these antennas located around a realistic breast model, made with biocompatible materials, has been analysed with the electromagnetic simulator, obtaining good results and demonstrating the usefulness of the designed antenna in the proposed application.
topic biological material characterization
microwave imaging
printed monopole
slots
stepped antenna
UWB antenna
url https://www.mdpi.com/2079-9292/10/3/304
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