Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia

With the ageing infrastructure and fast-growing demand faced by utilities worldwide, voltage uprating is one of the most effective solutions and strategic approaches in asset management decisions. In this study, a systematic voltage uprating method is used to propose the new voltage level, based on...

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Main Authors: Nor S.F.M., Ab Kadir M.Z.A., Ariffin A.M., Osman M., Rahman M.S.A., Zainuddin N.M.
Other Authors: 57188964617
Format: Article
Published: MDPI 2023
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Institution: Universiti Tenaga Nasional
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spelling my.uniten.dspace-259742023-05-29T17:05:51Z Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia Nor S.F.M. Ab Kadir M.Z.A. Ariffin A.M. Osman M. Rahman M.S.A. Zainuddin N.M. 57188964617 25947297000 16400722400 7201930315 57188968783 57217311886 With the ageing infrastructure and fast-growing demand faced by utilities worldwide, voltage uprating is one of the most effective solutions and strategic approaches in asset management decisions. In this study, a systematic voltage uprating method is used to propose the new voltage level, based on the existing transmission lines� physical structure, by utilising appropriate techniques. Prior to work conducted, the existing 132 kV transmission line was first examined in terms of the clearances and the components attached, and a technical issue on the clearance under still air was found to be a significant concern, particularly on phase-to-earth arrangements. Next, the proposed techniques and processes, by increasing the insulation strength and improving air conductor clearances, were used for the individual existing 132 kV transmission tower. The proposed voltage uprating of the 132 kV transmission tower comprehensively examines phase-to-earth under normal and extreme wind conditions based on electrical clearance requirements for 275 kV transmission lines. The proposed uprating model was then simulated using the Finite Element Method (FEM)-based commercial software under several lightning conditions, i.e., various basic lightning insulation levels (BIL) and different flashover mechanisms, taking into consideration still air and wind conditions for the voltage profile and its insulation strength analyses. The study found that the voltage profile condition for the proposed voltage uprating model was able to withstand its BIL under all conditions and thus satisfied the electrical requirement needed. � 2021 by the authors. Licensee MDPI, Basel, Switzerland. Final 2023-05-29T09:05:51Z 2023-05-29T09:05:51Z 2021 Article 10.3390/app11199087 2-s2.0-85116019844 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85116019844&doi=10.3390%2fapp11199087&partnerID=40&md5=de5160e7e6b5ada150e2c1bfcd943683 https://irepository.uniten.edu.my/handle/123456789/25974 11 19 9087 All Open Access, Gold MDPI 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 With the ageing infrastructure and fast-growing demand faced by utilities worldwide, voltage uprating is one of the most effective solutions and strategic approaches in asset management decisions. In this study, a systematic voltage uprating method is used to propose the new voltage level, based on the existing transmission lines� physical structure, by utilising appropriate techniques. Prior to work conducted, the existing 132 kV transmission line was first examined in terms of the clearances and the components attached, and a technical issue on the clearance under still air was found to be a significant concern, particularly on phase-to-earth arrangements. Next, the proposed techniques and processes, by increasing the insulation strength and improving air conductor clearances, were used for the individual existing 132 kV transmission tower. The proposed voltage uprating of the 132 kV transmission tower comprehensively examines phase-to-earth under normal and extreme wind conditions based on electrical clearance requirements for 275 kV transmission lines. The proposed uprating model was then simulated using the Finite Element Method (FEM)-based commercial software under several lightning conditions, i.e., various basic lightning insulation levels (BIL) and different flashover mechanisms, taking into consideration still air and wind conditions for the voltage profile and its insulation strength analyses. The study found that the voltage profile condition for the proposed voltage uprating model was able to withstand its BIL under all conditions and thus satisfied the electrical requirement needed. � 2021 by the authors. Licensee MDPI, Basel, Switzerland.
author2 57188964617
author_facet 57188964617
Nor S.F.M.
Ab Kadir M.Z.A.
Ariffin A.M.
Osman M.
Rahman M.S.A.
Zainuddin N.M.
format Article
author Nor S.F.M.
Ab Kadir M.Z.A.
Ariffin A.M.
Osman M.
Rahman M.S.A.
Zainuddin N.M.
spellingShingle Nor S.F.M.
Ab Kadir M.Z.A.
Ariffin A.M.
Osman M.
Rahman M.S.A.
Zainuddin N.M.
Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia
author_sort Nor S.F.M.
title Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia
title_short Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia
title_full Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia
title_fullStr Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia
title_full_unstemmed Systematic approaches and analyses on voltage uprating of 132 kv transmission lines: A case study in malaysia
title_sort systematic approaches and analyses on voltage uprating of 132 kv transmission lines: a case study in malaysia
publisher MDPI
publishDate 2023
_version_ 1806424039840808960