Efficient metasurface for electromagnetic energy harvesting with high capture efficiency and a wide range of incident angles
This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a high capture efficiency and a wide incident angle. The proposed MS structure is comprised of an ensemble of electric ring resonator (ERR) array. The MS’s impedance is engineered to match free space, so...
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2023
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Online Access: | http://eprints.uthm.edu.my/9275/1/J15336_783fb90eee68839565d6509505b55420.pdf http://eprints.uthm.edu.my/9275/ https://doi.org/10.1080/09205071.2022.2128898 |
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my.uthm.eprints.92752023-07-17T07:47:18Z http://eprints.uthm.edu.my/9275/ Efficient metasurface for electromagnetic energy harvesting with high capture efficiency and a wide range of incident angles Ghaleb Amer, Abdulrahman Ahmed Sapuan, Syarfa Zahirah Y. I. Ashyap, Adel T Technology (General) This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a high capture efficiency and a wide incident angle. The proposed MS structure is comprised of an ensemble of electric ring resonator (ERR) array. The MS’s impedance is engineered to match free space, so that the incident electromagnetic (EM) power is efficiently captured with minimal reflection and delivered to the optimal resistor load through an optimally positioned metallic-via. According to the simulation results obtained by CST Microwave Studio, the proposed MS harvester achieves higher conversion efficiency of about 91% under normal incidence and more than 78% across a wider incident angle up to 60°. In order to verify the simulation results, a 5×5 cell array of the proposed MS harvester is fabricated and tested. The simulation and experimental results are well match. The proposed MS configuration can be attractive for high-efficiency and compact wireless sensor network harvesting systems. Taylor&francis 2023 Article PeerReviewed text en http://eprints.uthm.edu.my/9275/1/J15336_783fb90eee68839565d6509505b55420.pdf Ghaleb Amer, Abdulrahman Ahmed and Sapuan, Syarfa Zahirah and Y. I. Ashyap, Adel (2023) Efficient metasurface for electromagnetic energy harvesting with high capture efficiency and a wide range of incident angles. JOURNAL OF ELECTROMAGNETIC WAVES AND APPLICATIONS. pp. 1-13. https://doi.org/10.1080/09205071.2022.2128898 |
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T Technology (General) Ghaleb Amer, Abdulrahman Ahmed Sapuan, Syarfa Zahirah Y. I. Ashyap, Adel Efficient metasurface for electromagnetic energy harvesting with high capture efficiency and a wide range of incident angles |
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This work introduces a miniaturized metasurface (MS) energy harvester operating at 5.54 GHz with a high capture efficiency and a wide incident angle. The proposed MS structure is comprised of an ensemble of electric ring resonator (ERR) array. The MS’s impedance is engineered to match free space, so that the incident electromagnetic (EM) power is efficiently captured with minimal reflection and delivered to the optimal resistor load through an optimally positioned metallic-via. According to the simulation results obtained by CST Microwave Studio, the proposed MS harvester achieves higher conversion efficiency of about 91% under normal incidence and more than 78% across a wider incident angle up to 60°. In order to verify the simulation results, a 5×5 cell array of the proposed MS harvester is fabricated and tested. The simulation and experimental results are well match. The proposed MS configuration can be attractive for high-efficiency and compact wireless sensor network
harvesting systems. |
format |
Article |
author |
Ghaleb Amer, Abdulrahman Ahmed Sapuan, Syarfa Zahirah Y. I. Ashyap, Adel |
author_facet |
Ghaleb Amer, Abdulrahman Ahmed Sapuan, Syarfa Zahirah Y. I. Ashyap, Adel |
author_sort |
Ghaleb Amer, Abdulrahman Ahmed |
title |
Efficient metasurface for electromagnetic energy harvesting
with high capture efficiency and a wide range of incident
angles |
title_short |
Efficient metasurface for electromagnetic energy harvesting
with high capture efficiency and a wide range of incident
angles |
title_full |
Efficient metasurface for electromagnetic energy harvesting
with high capture efficiency and a wide range of incident
angles |
title_fullStr |
Efficient metasurface for electromagnetic energy harvesting
with high capture efficiency and a wide range of incident
angles |
title_full_unstemmed |
Efficient metasurface for electromagnetic energy harvesting
with high capture efficiency and a wide range of incident
angles |
title_sort |
efficient metasurface for electromagnetic energy harvesting
with high capture efficiency and a wide range of incident
angles |
publisher |
Taylor&francis |
publishDate |
2023 |
url |
http://eprints.uthm.edu.my/9275/1/J15336_783fb90eee68839565d6509505b55420.pdf http://eprints.uthm.edu.my/9275/ https://doi.org/10.1080/09205071.2022.2128898 |
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1772813822884577280 |