Implementation of voltage optimization for sustainable energy

The voltage control in the power distribution network is challenged firstly by constantly increasing in power demand and secondly by a growing number of distributed connections, which significantly changes the load flow in the network. Situation is worsening with the current heavily implemented micr...

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Main Authors: Tan J.D., Koh S.P., Au M.T., Tiong S.K., Ali K.
Other Authors: 38863172300
Format: Article
Published: Institute of Advanced Engineering and Science 2023
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spelling my.uniten.dspace-236792023-05-29T14:50:59Z Implementation of voltage optimization for sustainable energy Tan J.D. Koh S.P. Au M.T. Tiong S.K. Ali K. 38863172300 22951210700 9742020600 15128307800 36130958600 The voltage control in the power distribution network is challenged firstly by constantly increasing in power demand and secondly by a growing number of distributed connections, which significantly changes the load flow in the network. Situation is worsening with the current heavily implemented micro-generation of Solar PV. Consequently, the uncontrollable rapid changes in the power distribution network would affect voltage instability at the feeder with wide area power demand. Voltage instability would affect the energy efficiency of the electrical equipment. Moreover, the lifespan of some equipment would be shortened due to the excessive and unstable voltage supplied. The proposed research aims to implement the low impedance voltage optimization system in solving the existing problem. The voltage optimization system had been tested on both resistive and inductive loads. The power consumption of the loads had been measured at a few discrete values of voltage optimization within the statutory region. Further tests were conducted on industrial water pump, general lightings with mixed loads, office building, restaurant and plastic injection moulding machine. The power measurements were logged and the results in term of power consumption were analysed. The results showed that the proposed optimization mechanism successfully optimize and saved 6.81%, 14.42%, 13.97%, 12.23%, and 26.23% of the power consumptions in respective tests. � 2018 Institute of Advanced Engineering and Science All rights reserved. Final 2023-05-29T06:50:59Z 2023-05-29T06:50:59Z 2018 Article 10.11591/ijeecs.v12.i1.pp341-347 2-s2.0-85051263358 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85051263358&doi=10.11591%2fijeecs.v12.i1.pp341-347&partnerID=40&md5=dca7829488a416ac6f085f63ea730dea https://irepository.uniten.edu.my/handle/123456789/23679 12 1 341 347 All Open Access, Green Institute of Advanced Engineering and Science Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
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continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
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description The voltage control in the power distribution network is challenged firstly by constantly increasing in power demand and secondly by a growing number of distributed connections, which significantly changes the load flow in the network. Situation is worsening with the current heavily implemented micro-generation of Solar PV. Consequently, the uncontrollable rapid changes in the power distribution network would affect voltage instability at the feeder with wide area power demand. Voltage instability would affect the energy efficiency of the electrical equipment. Moreover, the lifespan of some equipment would be shortened due to the excessive and unstable voltage supplied. The proposed research aims to implement the low impedance voltage optimization system in solving the existing problem. The voltage optimization system had been tested on both resistive and inductive loads. The power consumption of the loads had been measured at a few discrete values of voltage optimization within the statutory region. Further tests were conducted on industrial water pump, general lightings with mixed loads, office building, restaurant and plastic injection moulding machine. The power measurements were logged and the results in term of power consumption were analysed. The results showed that the proposed optimization mechanism successfully optimize and saved 6.81%, 14.42%, 13.97%, 12.23%, and 26.23% of the power consumptions in respective tests. � 2018 Institute of Advanced Engineering and Science All rights reserved.
author2 38863172300
author_facet 38863172300
Tan J.D.
Koh S.P.
Au M.T.
Tiong S.K.
Ali K.
format Article
author Tan J.D.
Koh S.P.
Au M.T.
Tiong S.K.
Ali K.
spellingShingle Tan J.D.
Koh S.P.
Au M.T.
Tiong S.K.
Ali K.
Implementation of voltage optimization for sustainable energy
author_sort Tan J.D.
title Implementation of voltage optimization for sustainable energy
title_short Implementation of voltage optimization for sustainable energy
title_full Implementation of voltage optimization for sustainable energy
title_fullStr Implementation of voltage optimization for sustainable energy
title_full_unstemmed Implementation of voltage optimization for sustainable energy
title_sort implementation of voltage optimization for sustainable energy
publisher Institute of Advanced Engineering and Science
publishDate 2023
_version_ 1806426443044880384
score 13.222552