A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application

Controlling desired frequency without affecting physical size of wideband microstrip antenna is a challenging issue especially for breast cancer microwave imaging application. This paper presents a solution for improving the lower frequency operation and achieving wider frequency bandwidth by introd...

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Published in:AEU - International Journal of Electronics and Communications
Main Author: Jumaat H.; Hong Ping K.; Abd Rahman N.H.; Yon H.; Mohd Redzwan F.N.; Awang R.A.
Format: Article
Language:English
Published: Elsevier GmbH 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098462637&doi=10.1016%2fj.aeue.2020.153492&partnerID=40&md5=1780bffaeb61d903184d2645c483e380
id 2-s2.0-85098462637
spelling 2-s2.0-85098462637
Jumaat H.; Hong Ping K.; Abd Rahman N.H.; Yon H.; Mohd Redzwan F.N.; Awang R.A.
A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
2021
AEU - International Journal of Electronics and Communications
129

10.1016/j.aeue.2020.153492
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098462637&doi=10.1016%2fj.aeue.2020.153492&partnerID=40&md5=1780bffaeb61d903184d2645c483e380
Controlling desired frequency without affecting physical size of wideband microstrip antenna is a challenging issue especially for breast cancer microwave imaging application. This paper presents a solution for improving the lower frequency operation and achieving wider frequency bandwidth by introducing Conductor Backed Coplanar Waveguide (CBCPW) feeding and adopting stubline with notch-staircase shape on radiating patch design. The dimension of the proposed design is 43 × 43 × 1.6 mm3 which reducing 23% in size compared to the antenna without CBCPW feeding. The antenna operates from 1.85 to 8.37 GHz with 127.6% of fractional bandwidth. It showed a good reflection coefficient with mostly below −15 dB and gain varies from 1 dBi to 5.27 dBi across the impedance bandwidth. The proposed antenna is also experimentally verified, achieving acceptable agreement between the simulation and measurement results. In addition, time domain performance such as input and received signal response and group delay are also observed for the proposed antenna. Owing to its compact size, wideband frequency operation and other acceptable performance, the proposed antenna is suitable for breast tumor imaging implementation. © 2020 Elsevier GmbH
Elsevier GmbH
14348411
English
Article

author Jumaat H.; Hong Ping K.; Abd Rahman N.H.; Yon H.; Mohd Redzwan F.N.; Awang R.A.
spellingShingle Jumaat H.; Hong Ping K.; Abd Rahman N.H.; Yon H.; Mohd Redzwan F.N.; Awang R.A.
A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
author_facet Jumaat H.; Hong Ping K.; Abd Rahman N.H.; Yon H.; Mohd Redzwan F.N.; Awang R.A.
author_sort Jumaat H.; Hong Ping K.; Abd Rahman N.H.; Yon H.; Mohd Redzwan F.N.; Awang R.A.
title A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
title_short A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
title_full A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
title_fullStr A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
title_full_unstemmed A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
title_sort A compact modified wideband antenna with CBCPW, stubline and notch-staircase for breast cancer microwave imaging application
publishDate 2021
container_title AEU - International Journal of Electronics and Communications
container_volume 129
container_issue
doi_str_mv 10.1016/j.aeue.2020.153492
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85098462637&doi=10.1016%2fj.aeue.2020.153492&partnerID=40&md5=1780bffaeb61d903184d2645c483e380
description Controlling desired frequency without affecting physical size of wideband microstrip antenna is a challenging issue especially for breast cancer microwave imaging application. This paper presents a solution for improving the lower frequency operation and achieving wider frequency bandwidth by introducing Conductor Backed Coplanar Waveguide (CBCPW) feeding and adopting stubline with notch-staircase shape on radiating patch design. The dimension of the proposed design is 43 × 43 × 1.6 mm3 which reducing 23% in size compared to the antenna without CBCPW feeding. The antenna operates from 1.85 to 8.37 GHz with 127.6% of fractional bandwidth. It showed a good reflection coefficient with mostly below −15 dB and gain varies from 1 dBi to 5.27 dBi across the impedance bandwidth. The proposed antenna is also experimentally verified, achieving acceptable agreement between the simulation and measurement results. In addition, time domain performance such as input and received signal response and group delay are also observed for the proposed antenna. Owing to its compact size, wideband frequency operation and other acceptable performance, the proposed antenna is suitable for breast tumor imaging implementation. © 2020 Elsevier GmbH
publisher Elsevier GmbH
issn 14348411
language English
format Article
accesstype
record_format scopus
collection Scopus
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