Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications

In this article, a low-profile, compact, quad-port super-wideband (SWB) multiple-input- multiple-output (MIMO) antenna is presented for the internet of things (IoT) applications. The proposed antenna comprises four identical sickle-shaped resonating elements, which are excited by tapered coplanar wa...

Full description

Bibliographic Details
Main Authors: Pawan Kumar, Shabana Urooj, Areej Malibari
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9296765/
_version_ 1818444599011573760
author Pawan Kumar
Shabana Urooj
Areej Malibari
author_facet Pawan Kumar
Shabana Urooj
Areej Malibari
author_sort Pawan Kumar
collection DOAJ
description In this article, a low-profile, compact, quad-port super-wideband (SWB) multiple-input- multiple-output (MIMO) antenna is presented for the internet of things (IoT) applications. The proposed antenna comprises four identical sickle-shaped resonating elements, which are excited by tapered coplanar waveguide (CPW) feed lines. The antenna elements are arranged in rotational symmetry (mutually orthogonal to each other) to achieve high port isolation. A complementary slot, which matches the sickle-shaped radiator, is etched from the ground of the proposed monopole antenna element to achieve massive bandwidth. The MIMO antenna possesses a resonating bandwidth (|S11| ≤ -10 dB) of 1.3-40 GHz and a bandwidth ratio of 31:1. In addition, an L-shaped slit and a complementary split-ring resonator (CSRR) are introduced in the sickle-shaped radiator to reject Bluetooth (2.4 GHz), WLAN (5.5 GHz), and downlink of X-band satellite communication (7.5 GHz) signals from the SWB. The proposed MIMO antenna is fabricated and experimental results are found in agreement with the simulated results.
first_indexed 2024-12-14T19:18:29Z
format Article
id doaj.art-4f3364113eee454c89082fa04118696d
institution Directory Open Access Journal
issn 2169-3536
language English
last_indexed 2024-12-14T19:18:29Z
publishDate 2020-01-01
publisher IEEE
record_format Article
series IEEE Access
spelling doaj.art-4f3364113eee454c89082fa04118696d2022-12-21T22:50:26ZengIEEEIEEE Access2169-35362020-01-01822669722670410.1109/ACCESS.2020.30455349296765Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT ApplicationsPawan Kumar0https://orcid.org/0000-0002-8565-5879Shabana Urooj1https://orcid.org/0000-0002-1477-8759Areej Malibari2https://orcid.org/0000-0002-7123-8548Department of Electrical Engineering, School of Engineering, Gautam Buddha University, Greater Noida, IndiaDepartment of Electrical Engineering, College of Engineering, Princess Nourah Bint Abdulrahman University, Riyadh, Saudi ArabiaDepartment of Computer Science, Faculty of Computing and IT, King Abdulaziz University, Jeddah, Saudi ArabiaIn this article, a low-profile, compact, quad-port super-wideband (SWB) multiple-input- multiple-output (MIMO) antenna is presented for the internet of things (IoT) applications. The proposed antenna comprises four identical sickle-shaped resonating elements, which are excited by tapered coplanar waveguide (CPW) feed lines. The antenna elements are arranged in rotational symmetry (mutually orthogonal to each other) to achieve high port isolation. A complementary slot, which matches the sickle-shaped radiator, is etched from the ground of the proposed monopole antenna element to achieve massive bandwidth. The MIMO antenna possesses a resonating bandwidth (|S11| ≤ -10 dB) of 1.3-40 GHz and a bandwidth ratio of 31:1. In addition, an L-shaped slit and a complementary split-ring resonator (CSRR) are introduced in the sickle-shaped radiator to reject Bluetooth (2.4 GHz), WLAN (5.5 GHz), and downlink of X-band satellite communication (7.5 GHz) signals from the SWB. The proposed MIMO antenna is fabricated and experimental results are found in agreement with the simulated results.https://ieeexplore.ieee.org/document/9296765/IoTisolationMIMOmonopolespatial diversitySWB
spellingShingle Pawan Kumar
Shabana Urooj
Areej Malibari
Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications
IEEE Access
IoT
isolation
MIMO
monopole
spatial diversity
SWB
title Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications
title_full Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications
title_fullStr Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications
title_full_unstemmed Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications
title_short Design and Implementation of Quad-Element Super-Wideband MIMO Antenna for IoT Applications
title_sort design and implementation of quad element super wideband mimo antenna for iot applications
topic IoT
isolation
MIMO
monopole
spatial diversity
SWB
url https://ieeexplore.ieee.org/document/9296765/
work_keys_str_mv AT pawankumar designandimplementationofquadelementsuperwidebandmimoantennaforiotapplications
AT shabanaurooj designandimplementationofquadelementsuperwidebandmimoantennaforiotapplications
AT areejmalibari designandimplementationofquadelementsuperwidebandmimoantennaforiotapplications