Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells

Minimal profile antennas for wireless devices which characteristics consisted of being low cost, highly reliable, and lightweight, it bears a new challenge for the design of the antenna in wireless communications. In this paper, we propose a design of circularly polarized microstrip patch antenna in...

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Main Authors: Alobaidi, O.R., Akhtaruzzaman, M., Selvanathan, V., Amin, N.
Format: Conference Paper
Language:English
Published: 2020
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spelling my.uniten.dspace-129872020-07-07T02:39:12Z Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells Alobaidi, O.R. Akhtaruzzaman, M. Selvanathan, V. Amin, N. Minimal profile antennas for wireless devices which characteristics consisted of being low cost, highly reliable, and lightweight, it bears a new challenge for the design of the antenna in wireless communications. In this paper, we propose a design of circularly polarized microstrip patch antenna integration with solar cells for green wireless applications. Two techniques have been proposed to form the prototype between the communication system (design of antenna) and solar panel (solar cell). Both methods will face two issues generally; the solar system needs to get 100% sunlight and the magnetic field produced by radio communication systems as well as the electric field produced by solar cells should not affect the efficiency. The antenna is composed of a Koch fractal loop patch and the substrate is employed using a transparent material. This enables the light to pass through with high efficiency to illuminate the solar panel cells while the RF performance is maintained with minimal degradation. The communication frequency measures 2.6, 3.5 and 4.4 GHz. CST MWS simulation is also studied and compared among the different substrates which show different results based on the same parameters, which is implemented with a lattice of 2×2 square solar cells. With this arrangement, the solar cells will be able to obtain 100% of sunlight exposure. The characteristics of the broadband are achieved by combining resonances and the minimum axial ratio points created by the driven patch and solar cell surface. © 2019 IEEE. 2020-02-03T03:28:19Z 2020-02-03T03:28:19Z 2019 Conference Paper 10.1109/IconSpace.2019.8905985 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description Minimal profile antennas for wireless devices which characteristics consisted of being low cost, highly reliable, and lightweight, it bears a new challenge for the design of the antenna in wireless communications. In this paper, we propose a design of circularly polarized microstrip patch antenna integration with solar cells for green wireless applications. Two techniques have been proposed to form the prototype between the communication system (design of antenna) and solar panel (solar cell). Both methods will face two issues generally; the solar system needs to get 100% sunlight and the magnetic field produced by radio communication systems as well as the electric field produced by solar cells should not affect the efficiency. The antenna is composed of a Koch fractal loop patch and the substrate is employed using a transparent material. This enables the light to pass through with high efficiency to illuminate the solar panel cells while the RF performance is maintained with minimal degradation. The communication frequency measures 2.6, 3.5 and 4.4 GHz. CST MWS simulation is also studied and compared among the different substrates which show different results based on the same parameters, which is implemented with a lattice of 2×2 square solar cells. With this arrangement, the solar cells will be able to obtain 100% of sunlight exposure. The characteristics of the broadband are achieved by combining resonances and the minimum axial ratio points created by the driven patch and solar cell surface. © 2019 IEEE.
format Conference Paper
author Alobaidi, O.R.
Akhtaruzzaman, M.
Selvanathan, V.
Amin, N.
spellingShingle Alobaidi, O.R.
Akhtaruzzaman, M.
Selvanathan, V.
Amin, N.
Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells
author_facet Alobaidi, O.R.
Akhtaruzzaman, M.
Selvanathan, V.
Amin, N.
author_sort Alobaidi, O.R.
title Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells
title_short Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells
title_full Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells
title_fullStr Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells
title_full_unstemmed Koch Fractal Loop Circular Polarization (CP) Antenna Integrated with Solar Cells
title_sort koch fractal loop circular polarization (cp) antenna integrated with solar cells
publishDate 2020
_version_ 1672614196342161408
score 13.214268