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Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting

RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising candidate for ambient energy scavenging sources. In this research, a high-efficiency quad-band rectenna is designed for ambient RF wireless energy scavenging over the frequency range from 0.8 to 2.5 GHz...

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Detalles Bibliográficos
Autores principales: Roy, Sunanda, Tiang, Jun Jiat, Roslee, Mardeni Bin, Ahmed, Md Tanvir, Kouzani, Abbas Z., Mahmud, M. A. Parvez
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8659843/
https://www.ncbi.nlm.nih.gov/pubmed/34883846
http://dx.doi.org/10.3390/s21237838
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author Roy, Sunanda
Tiang, Jun Jiat
Roslee, Mardeni Bin
Ahmed, Md Tanvir
Kouzani, Abbas Z.
Mahmud, M. A. Parvez
author_facet Roy, Sunanda
Tiang, Jun Jiat
Roslee, Mardeni Bin
Ahmed, Md Tanvir
Kouzani, Abbas Z.
Mahmud, M. A. Parvez
author_sort Roy, Sunanda
collection PubMed
description RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising candidate for ambient energy scavenging sources. In this research, a high-efficiency quad-band rectenna is designed for ambient RF wireless energy scavenging over the frequency range from 0.8 to 2.5 GHz. Firstly, the detailed characteristics (i.e., available frequency bands and associated power density levels) of the ambient RF power are studied and analyzed. The data (i.e., RF survey results) are then applied to aid the design of a new quad-band RF harvester. A newly designed impedance matching network (IMN) with an additional L-network in a third-branch of dual-port rectifier circuit is familiarized to increase the performance and RF-to-DC conversion efficiency of the harvester with comparatively very low input RF power density levels. A dual-polarized multi-frequency bow-tie antenna is designed, which has a wide bandwidth (BW) and is miniature in size. The dual cross planer structure internal triangular shape and co-axial feeding are used to decrease the size and enhance the antenna performance. Consequently, the suggested RF harvester is designed to cover all available frequency bands, including part of most mobile phone and wireless local area network (WLAN) bands in Malaysia, while the optimum resistance value for maximum dc rectification efficiency (up to 48%) is from 1 to 10 kΩ. The measurement result in the ambient environment (i.e., both indoor and outdoor) depicts that the new harvester is able to harvest dc voltage of 124.3 and 191.0 mV, respectively, which can be used for low power sensors and wireless applications.
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spelling pubmed-86598432021-12-10 Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting Roy, Sunanda Tiang, Jun Jiat Roslee, Mardeni Bin Ahmed, Md Tanvir Kouzani, Abbas Z. Mahmud, M. A. Parvez Sensors (Basel) Article RF power is broadly available in both urban and semi-urban areas and thus exhibits as a promising candidate for ambient energy scavenging sources. In this research, a high-efficiency quad-band rectenna is designed for ambient RF wireless energy scavenging over the frequency range from 0.8 to 2.5 GHz. Firstly, the detailed characteristics (i.e., available frequency bands and associated power density levels) of the ambient RF power are studied and analyzed. The data (i.e., RF survey results) are then applied to aid the design of a new quad-band RF harvester. A newly designed impedance matching network (IMN) with an additional L-network in a third-branch of dual-port rectifier circuit is familiarized to increase the performance and RF-to-DC conversion efficiency of the harvester with comparatively very low input RF power density levels. A dual-polarized multi-frequency bow-tie antenna is designed, which has a wide bandwidth (BW) and is miniature in size. The dual cross planer structure internal triangular shape and co-axial feeding are used to decrease the size and enhance the antenna performance. Consequently, the suggested RF harvester is designed to cover all available frequency bands, including part of most mobile phone and wireless local area network (WLAN) bands in Malaysia, while the optimum resistance value for maximum dc rectification efficiency (up to 48%) is from 1 to 10 kΩ. The measurement result in the ambient environment (i.e., both indoor and outdoor) depicts that the new harvester is able to harvest dc voltage of 124.3 and 191.0 mV, respectively, which can be used for low power sensors and wireless applications. MDPI 2021-11-25 /pmc/articles/PMC8659843/ /pubmed/34883846 http://dx.doi.org/10.3390/s21237838 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Roy, Sunanda
Tiang, Jun Jiat
Roslee, Mardeni Bin
Ahmed, Md Tanvir
Kouzani, Abbas Z.
Mahmud, M. A. Parvez
Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting
title Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting
title_full Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting
title_fullStr Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting
title_full_unstemmed Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting
title_short Quad-Band Rectenna for Ambient Radio Frequency (RF) Energy Harvesting
title_sort quad-band rectenna for ambient radio frequency (rf) energy harvesting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8659843/
https://www.ncbi.nlm.nih.gov/pubmed/34883846
http://dx.doi.org/10.3390/s21237838
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