Innovative method of non-contact electric field energy harvesting under 275kV power transmission line

Advance technologies in today�s world gradually developing and bringing many innovative products and findings. One of the improving technologies of all time are energy harvesting. With a massive amount of external sources, energy harvesting can be a prominent and alternative solution to provide powe...

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Main Authors: Yeesparan S., Baharuddin M.Z., Din N.M., Haron M.H.
Other Authors: 57205239150
Format: Article
Published: Alpha Publishers 2023
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spelling my.uniten.dspace-250952023-05-29T16:06:45Z Innovative method of non-contact electric field energy harvesting under 275kV power transmission line Yeesparan S. Baharuddin M.Z. Din N.M. Haron M.H. 57205239150 35329255600 9335429400 57219410269 Advance technologies in today�s world gradually developing and bringing many innovative products and findings. One of the improving technologies of all time are energy harvesting. With a massive amount of external sources, energy harvesting can be a prominent and alternative solution to provide power supply without batteries in a more cost effective at the same time environment friendly way. In this paper, a new method of harvesting electric field under 275kV transmission line is applied by using innovative design of non-contact electric field energy harvester (EFEH). Seven significant design parameters such as the capacitance of the harvester, the material and thickness of harvester and the surface nature of the harvester are examined and improved step by step ensuring an efficient, cost effective and less complaicated EFEH design. ANSYS Maxwell software is used to simulate, analyse and compare the electric field captured on each designs. In order to support the electric field simulations of all the harvester designs, EFEH prototypes are built and tested under a 275kV electrical transmission lines surroundings. A maximum of 14.5V of AC voltage from the harvester and 7uW of output power is recorded from the most efficient EFEH design using a simple half wave rectifier 10uF capacitor in filter. The proposed EFEH can be implemented to energize low powered sensors that are used to monitor conditions of electrical transmission lines and the vicinity surrounding the tower especially in areas that cannot be easily accessed by people. � 2020 Alpha Publishers. Final 2023-05-29T08:06:45Z 2023-05-29T08:06:45Z 2020 Article 2-s2.0-85099163961 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099163961&partnerID=40&md5=20c28b36fc93af6bd2c311db5d61f138 https://irepository.uniten.edu.my/handle/123456789/25095 10 12 13673 13687 Alpha Publishers Scopus
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/
description Advance technologies in today�s world gradually developing and bringing many innovative products and findings. One of the improving technologies of all time are energy harvesting. With a massive amount of external sources, energy harvesting can be a prominent and alternative solution to provide power supply without batteries in a more cost effective at the same time environment friendly way. In this paper, a new method of harvesting electric field under 275kV transmission line is applied by using innovative design of non-contact electric field energy harvester (EFEH). Seven significant design parameters such as the capacitance of the harvester, the material and thickness of harvester and the surface nature of the harvester are examined and improved step by step ensuring an efficient, cost effective and less complaicated EFEH design. ANSYS Maxwell software is used to simulate, analyse and compare the electric field captured on each designs. In order to support the electric field simulations of all the harvester designs, EFEH prototypes are built and tested under a 275kV electrical transmission lines surroundings. A maximum of 14.5V of AC voltage from the harvester and 7uW of output power is recorded from the most efficient EFEH design using a simple half wave rectifier 10uF capacitor in filter. The proposed EFEH can be implemented to energize low powered sensors that are used to monitor conditions of electrical transmission lines and the vicinity surrounding the tower especially in areas that cannot be easily accessed by people. � 2020 Alpha Publishers.
author2 57205239150
author_facet 57205239150
Yeesparan S.
Baharuddin M.Z.
Din N.M.
Haron M.H.
format Article
author Yeesparan S.
Baharuddin M.Z.
Din N.M.
Haron M.H.
spellingShingle Yeesparan S.
Baharuddin M.Z.
Din N.M.
Haron M.H.
Innovative method of non-contact electric field energy harvesting under 275kV power transmission line
author_sort Yeesparan S.
title Innovative method of non-contact electric field energy harvesting under 275kV power transmission line
title_short Innovative method of non-contact electric field energy harvesting under 275kV power transmission line
title_full Innovative method of non-contact electric field energy harvesting under 275kV power transmission line
title_fullStr Innovative method of non-contact electric field energy harvesting under 275kV power transmission line
title_full_unstemmed Innovative method of non-contact electric field energy harvesting under 275kV power transmission line
title_sort innovative method of non-contact electric field energy harvesting under 275kv power transmission line
publisher Alpha Publishers
publishDate 2023
_version_ 1806424369432363008
score 13.188404