A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands

The growing prevalence of IoT devices has heightened the focus on minimizing energy consumption in low-power electronic systems. Ambient radio frequency (RF) energy harvesting allows self-sustaining electronic devices to operate in IoT networks without cables, batteries, or allocated energy sources....

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Main Authors: Khatereh Nadali, Neeraj Kumar Maurya, Patrick McEvoy, Max J. Ammann
Format: Article
Language:English
Published: IEEE 2024-01-01
Series:IEEE Open Journal of Antennas and Propagation
Subjects:
Online Access:https://ieeexplore.ieee.org/document/10542345/
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author Khatereh Nadali
Neeraj Kumar Maurya
Patrick McEvoy
Max J. Ammann
author_facet Khatereh Nadali
Neeraj Kumar Maurya
Patrick McEvoy
Max J. Ammann
author_sort Khatereh Nadali
collection DOAJ
description The growing prevalence of IoT devices has heightened the focus on minimizing energy consumption in low-power electronic systems. Ambient radio frequency (RF) energy harvesting allows self-sustaining electronic devices to operate in IoT networks without cables, batteries, or allocated energy sources. This paper presents an innovative printed dual-band dual-polarized antenna designed for ambient RF energy harvesting in IoT applications. The proposed antenna targets efficient RF energy conversion from the most prevalent cellular frequency bands (sub-1 GHz and 1800 MHz) and sub-700 MHz Digital Terrestrial Television. This antenna is a significant advancement in the field, boasting a wide circularly polarized 610-968 MHz bandwidth and a linearly polarized bandwidth covering the GSM/4G 1800 MHz band. The antenna’s integration with a rectifier circuit demonstrates its ability to convert ambient RF energy into electrical power, regardless of the source antenna orientation. This integrated antenna development significantly reduces battery dependency in low-power IoT devices, paving the way for more sustainable and versatile wireless networks. Specifically, this antenna is crafted to achieve broad CP and adequate impedance bandwidths across targeted frequencies, crucial for the diverse requirements of ambient RF energy harvesting. Such a design meets our primary objectives of capturing RF energy effectively, with its omnidirectional pattern enabling it to collect ambient RF signals from different polarizations and directions.
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issn 2637-6431
language English
publishDate 2024-01-01
publisher IEEE
record_format Article
series IEEE Open Journal of Antennas and Propagation
spelling doaj-art-79fb2bcedcf344a28a04551bb3e16dcb2025-02-06T00:00:56ZengIEEEIEEE Open Journal of Antennas and Propagation2637-64312024-01-01561489149810.1109/OJAP.2024.340705010542345A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television BandsKhatereh Nadali0https://orcid.org/0009-0004-5307-2056Neeraj Kumar Maurya1Patrick McEvoy2Max J. Ammann3https://orcid.org/0000-0002-1418-8142Antenna and High-Frequency Research Center, Technological University Dublin, 6 Dublin, IrelandAntenna and High-Frequency Research Center, Technological University Dublin, 6 Dublin, IrelandAntenna and High-Frequency Research Center, Technological University Dublin, 6 Dublin, IrelandAntenna and High-Frequency Research Center, Technological University Dublin, 6 Dublin, IrelandThe growing prevalence of IoT devices has heightened the focus on minimizing energy consumption in low-power electronic systems. Ambient radio frequency (RF) energy harvesting allows self-sustaining electronic devices to operate in IoT networks without cables, batteries, or allocated energy sources. This paper presents an innovative printed dual-band dual-polarized antenna designed for ambient RF energy harvesting in IoT applications. The proposed antenna targets efficient RF energy conversion from the most prevalent cellular frequency bands (sub-1 GHz and 1800 MHz) and sub-700 MHz Digital Terrestrial Television. This antenna is a significant advancement in the field, boasting a wide circularly polarized 610-968 MHz bandwidth and a linearly polarized bandwidth covering the GSM/4G 1800 MHz band. The antenna’s integration with a rectifier circuit demonstrates its ability to convert ambient RF energy into electrical power, regardless of the source antenna orientation. This integrated antenna development significantly reduces battery dependency in low-power IoT devices, paving the way for more sustainable and versatile wireless networks. Specifically, this antenna is crafted to achieve broad CP and adequate impedance bandwidths across targeted frequencies, crucial for the diverse requirements of ambient RF energy harvesting. Such a design meets our primary objectives of capturing RF energy effectively, with its omnidirectional pattern enabling it to collect ambient RF signals from different polarizations and directions.https://ieeexplore.ieee.org/document/10542345/Circular polarization (CP)wideband antennaslot antennaRF energy harvestingInternet of Things (IoT)rectifier circuit
spellingShingle Khatereh Nadali
Neeraj Kumar Maurya
Patrick McEvoy
Max J. Ammann
A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands
IEEE Open Journal of Antennas and Propagation
Circular polarization (CP)
wideband antenna
slot antenna
RF energy harvesting
Internet of Things (IoT)
rectifier circuit
title A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands
title_full A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands
title_fullStr A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands
title_full_unstemmed A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands
title_short A Dual-Band Dual-Polarized Antenna for Harvesting in Cellular and Digital Terrestrial Television Bands
title_sort dual band dual polarized antenna for harvesting in cellular and digital terrestrial television bands
topic Circular polarization (CP)
wideband antenna
slot antenna
RF energy harvesting
Internet of Things (IoT)
rectifier circuit
url https://ieeexplore.ieee.org/document/10542345/
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