A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications

A compact high bandwidth ratio (BDR) super wide band flower slotted micro strip patch antenna (SWB-FSMPA) for super wide band (SWB) applications is presented. The SWB-FSMPA is constructed on a FR-4 substrate having a size of 16 × 22 mm2. The SWB-FSMPA incorporates a 50 Ω tapered micro strip line and...

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Main Authors: V N Koteswara Rao Devana, A. Beno, Mohammed S. Alzaidi, P. Bala Murali Krishna, G. Divyamrutha, Wahaj Abbas Awan, Thamer A.H. Alghamdi, Moath Alathbah
Format: Article
Language:English
Published: Elsevier 2024-01-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844023109200
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author V N Koteswara Rao Devana
A. Beno
Mohammed S. Alzaidi
P. Bala Murali Krishna
G. Divyamrutha
Wahaj Abbas Awan
Thamer A.H. Alghamdi
Moath Alathbah
author_facet V N Koteswara Rao Devana
A. Beno
Mohammed S. Alzaidi
P. Bala Murali Krishna
G. Divyamrutha
Wahaj Abbas Awan
Thamer A.H. Alghamdi
Moath Alathbah
author_sort V N Koteswara Rao Devana
collection DOAJ
description A compact high bandwidth ratio (BDR) super wide band flower slotted micro strip patch antenna (SWB-FSMPA) for super wide band (SWB) applications is presented. The SWB-FSMPA is constructed on a FR-4 substrate having a size of 16 × 22 mm2. The SWB-FSMPA incorporates a 50 Ω tapered micro strip line and a rectangular beveled defected ground structure (RB-DGS). This design enables a simulation bandwidth from 3.78 to 109.86 GHz, allowing for coverage of various wireless applications such as WiMAX (3.3–3.6 GHz), 5G (3.3–3.7 GHz), WLAN (5.15–5.825 GHz), UWB (3.1–10.6 GHz), Ku– (12–18 GHz), K– (18–27 GHz), Ka– (27–40 GHz), V– (40–75 GHz), and W– (75–110 GHz) millimeter wave bands. The SWB-FSMPA antenna exhibits a gain that varies within the range of 3.22–7.23 dBi and a peak efficiency of 93.3 %. The SWB-FSMPA possesses a bandwidth ratio (BR) of 29.1:1, a BDR of 5284 in the frequency domain, a minimal group delay (GD) fluctuation of <0.48 ns, and a linear phase in the time domain, making it well-suited for SWB applications.
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spelling doaj.art-9f7e32e2e59d49f88c22d464f0f86e192024-02-01T06:33:06ZengElsevierHeliyon2405-84402024-01-01101e23712A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applicationsV N Koteswara Rao Devana0A. Beno1Mohammed S. Alzaidi2P. Bala Murali Krishna3G. Divyamrutha4Wahaj Abbas Awan5Thamer A.H. Alghamdi6Moath Alathbah7ECE Department, Aditya Engineering College, Surampalem, Kakinada, A.P, IndiaECE Department, Dr. Sivanthi Aditanar College of Engineering, Tiruchendur, IndiaDepartment of Electrical Engineering, College of Engineering, Taif University, P.O. Box 11099, Taif 21944, Saudi ArabiaECE Department, Chalapathi Institute of Technology, Guntur, IndiaECE Department, Malla Reddy Engineering College, Maisammaguda, Hyderabad, Telangana, IndiaDepartment of Information and Communications Engineering, Chungbuk National University, Cheongju 28644, South Korea; Corresponding author.Wolfson Centre for Magnetics, School of Engineering, Cardiff University, Cardiff CF24 3AA, UK; Electrical Engineering Department, School of Engineering, Albaha University, Albaha 65779, Saudi Arabia; Corresponding author.Wolfson Centre for Magnetics, School of Engineering, Cardiff University, Cardiff CF24 3AA, UK.Department of Electrical Engineering, College of Engineering, King Saud University, Riyadh 11451, Saudi ArabiaA compact high bandwidth ratio (BDR) super wide band flower slotted micro strip patch antenna (SWB-FSMPA) for super wide band (SWB) applications is presented. The SWB-FSMPA is constructed on a FR-4 substrate having a size of 16 × 22 mm2. The SWB-FSMPA incorporates a 50 Ω tapered micro strip line and a rectangular beveled defected ground structure (RB-DGS). This design enables a simulation bandwidth from 3.78 to 109.86 GHz, allowing for coverage of various wireless applications such as WiMAX (3.3–3.6 GHz), 5G (3.3–3.7 GHz), WLAN (5.15–5.825 GHz), UWB (3.1–10.6 GHz), Ku– (12–18 GHz), K– (18–27 GHz), Ka– (27–40 GHz), V– (40–75 GHz), and W– (75–110 GHz) millimeter wave bands. The SWB-FSMPA antenna exhibits a gain that varies within the range of 3.22–7.23 dBi and a peak efficiency of 93.3 %. The SWB-FSMPA possesses a bandwidth ratio (BR) of 29.1:1, a BDR of 5284 in the frequency domain, a minimal group delay (GD) fluctuation of <0.48 ns, and a linear phase in the time domain, making it well-suited for SWB applications.http://www.sciencedirect.com/science/article/pii/S2405844023109200BDRBRMillimeter waveRB-DGSSWBTaper
spellingShingle V N Koteswara Rao Devana
A. Beno
Mohammed S. Alzaidi
P. Bala Murali Krishna
G. Divyamrutha
Wahaj Abbas Awan
Thamer A.H. Alghamdi
Moath Alathbah
A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications
Heliyon
BDR
BR
Millimeter wave
RB-DGS
SWB
Taper
title A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications
title_full A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications
title_fullStr A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications
title_full_unstemmed A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications
title_short A high bandwidth dimension ratio compact super wide band-flower slotted microstrip patch antenna for millimeter wireless applications
title_sort high bandwidth dimension ratio compact super wide band flower slotted microstrip patch antenna for millimeter wireless applications
topic BDR
BR
Millimeter wave
RB-DGS
SWB
Taper
url http://www.sciencedirect.com/science/article/pii/S2405844023109200
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