The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects
Dynamic Line Rating (DLR) is a cutting-edge technology implemented in the power transmission industry to enhance the efficiency and reliability of electricity networks. Unlike traditional static line ratings, which rely on conservative estimates of worst-case environmental conditions, DLR utilizes r...
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my.uniten.dspace-369202025-03-03T15:45:47Z The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects Fariz K.N.M.K. Nik Ali N.H. Johari D. Noor M.I.M. Ariffin A.M. Mohammad Noor S.Z. 59330010400 58221194800 24733632200 57209159142 16400722400 58643927500 Cutting edge technology Dynamic line rating Efficiency and reliability Electricity networks Environmental conditions Future prospects Line ratings Machine-learning Power transmission industry Technological advancement Dynamic Line Rating (DLR) is a cutting-edge technology implemented in the power transmission industry to enhance the efficiency and reliability of electricity networks. Unlike traditional static line ratings, which rely on conservative estimates of worst-case environmental conditions, DLR utilizes real-time data on vicinity, weather, and line status to dynamically adjust the permissible load on transmission lines. DLR methodologies provide a more accurate assessment of thermal capacity, maximize the use of existing infrastructure, and facilitate the integration of renewable energy sources. Despite its advantages, DLR implementation faces challenges, including the need for sophisticated monitoring equipment, robust data processing capabilities, and modified thermal models. This paper aims to chronicle the evolution of DLR, discuss major technological advancements, and explore future directions in the field of overhead lines and underground transmission cables. The review covers the historical context of DLR, current technological trends, emerging methodologies, DLR studies in tropical and subtropical regions, and the impact of DLR. By examining these themes, the paper provides a comprehensive overview of DLR technology, highlighting future research areas where DLR could transform power system operations and support the transition to a more flexible, efficient, and sustainable energy grid. ? 2024 IEEE. Final 2025-03-03T07:45:47Z 2025-03-03T07:45:47Z 2024 Conference paper 10.1109/ICSET63729.2024.10774680 2-s2.0-85215087036 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85215087036&doi=10.1109%2fICSET63729.2024.10774680&partnerID=40&md5=3bca39e1b27f643a6af9d8dc9dd163d7 https://irepository.uniten.edu.my/handle/123456789/36920 156 161 Institute of Electrical and Electronics Engineers Inc. Scopus |
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Cutting edge technology Dynamic line rating Efficiency and reliability Electricity networks Environmental conditions Future prospects Line ratings Machine-learning Power transmission industry Technological advancement |
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Cutting edge technology Dynamic line rating Efficiency and reliability Electricity networks Environmental conditions Future prospects Line ratings Machine-learning Power transmission industry Technological advancement Fariz K.N.M.K. Nik Ali N.H. Johari D. Noor M.I.M. Ariffin A.M. Mohammad Noor S.Z. The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects |
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Dynamic Line Rating (DLR) is a cutting-edge technology implemented in the power transmission industry to enhance the efficiency and reliability of electricity networks. Unlike traditional static line ratings, which rely on conservative estimates of worst-case environmental conditions, DLR utilizes real-time data on vicinity, weather, and line status to dynamically adjust the permissible load on transmission lines. DLR methodologies provide a more accurate assessment of thermal capacity, maximize the use of existing infrastructure, and facilitate the integration of renewable energy sources. Despite its advantages, DLR implementation faces challenges, including the need for sophisticated monitoring equipment, robust data processing capabilities, and modified thermal models. This paper aims to chronicle the evolution of DLR, discuss major technological advancements, and explore future directions in the field of overhead lines and underground transmission cables. The review covers the historical context of DLR, current technological trends, emerging methodologies, DLR studies in tropical and subtropical regions, and the impact of DLR. By examining these themes, the paper provides a comprehensive overview of DLR technology, highlighting future research areas where DLR could transform power system operations and support the transition to a more flexible, efficient, and sustainable energy grid. ? 2024 IEEE. |
author2 |
59330010400 |
author_facet |
59330010400 Fariz K.N.M.K. Nik Ali N.H. Johari D. Noor M.I.M. Ariffin A.M. Mohammad Noor S.Z. |
format |
Conference paper |
author |
Fariz K.N.M.K. Nik Ali N.H. Johari D. Noor M.I.M. Ariffin A.M. Mohammad Noor S.Z. |
author_sort |
Fariz K.N.M.K. |
title |
The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects |
title_short |
The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects |
title_full |
The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects |
title_fullStr |
The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects |
title_full_unstemmed |
The Evolution of Dynamic Line Rating: Technological Advancements and Future Prospects |
title_sort |
evolution of dynamic line rating: technological advancements and future prospects |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2025 |
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1825816036341972992 |
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