Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram
The integrity of high voltage transmission lines is extremely important to ensure the continuous electricity supply throughout the country. Faults, such as lightning strikes and flora and fauna encroachments to the transmission lines may cause disruption of electricity supply which will affect the o...
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my.uniten.dspace-295292023-12-28T14:30:23Z Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram Ridwan M.I. Yunus B. Musa A. Yen K.L. 6602280168 24448917500 55570393100 36988314100 Fault Clearing System Life Data Analysis Protective Relays Reliability Reliability Block Diagram Transmission Lines Weibull Distribution Decision making Electric lines Electric utilities Relay protection Reliability Transmission line theory Weibull distribution Electricity supply Fault clearing High voltage transmission lines Lightning strikes Malaysia Reliability assessments Reliability block diagrams Reliability Index Transmission line faults Using life Reliability analysis The integrity of high voltage transmission lines is extremely important to ensure the continuous electricity supply throughout the country. Faults, such as lightning strikes and flora and fauna encroachments to the transmission lines may cause disruption of electricity supply which will affect the overall power system and lead to a wide scale blackout. Therefore, fault clearing system is deployed to minimize the impact of the faults to the power system by disconnecting and isolating the affected transmission lines specifically. One of the main components of fault clearing system are the protective relays, which are vital in providing the decision making element for correct protection and fault clearing operations. As the electric utility company in Malaysia, Tenaga Nasional Berhad (TNB) is obliged to assess the reliability of the protective relays considering its importance to the fault clearing system. In this paper, a statistical method called Life Data Analysis using Weibull Distribution is applied to assess the reliability of the protective relays. Furthermore, the fault clearing system is modeled using Reliability Block Diagram to simulate the availability of the system and derive reliability indices which will assist TNB in managing the fault clearing system. � 2012 IEEE. Final 2023-12-28T06:30:23Z 2023-12-28T06:30:23Z 2012 Conference paper 10.1109/ICSSBE.2012.6396549 2-s2.0-84872920191 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84872920191&doi=10.1109%2fICSSBE.2012.6396549&partnerID=40&md5=d2018aab29b2f27578456489f7101102 https://irepository.uniten.edu.my/handle/123456789/29529 6396549 166 171 Scopus |
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Fault Clearing System Life Data Analysis Protective Relays Reliability Reliability Block Diagram Transmission Lines Weibull Distribution Decision making Electric lines Electric utilities Relay protection Reliability Transmission line theory Weibull distribution Electricity supply Fault clearing High voltage transmission lines Lightning strikes Malaysia Reliability assessments Reliability block diagrams Reliability Index Transmission line faults Using life Reliability analysis |
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Fault Clearing System Life Data Analysis Protective Relays Reliability Reliability Block Diagram Transmission Lines Weibull Distribution Decision making Electric lines Electric utilities Relay protection Reliability Transmission line theory Weibull distribution Electricity supply Fault clearing High voltage transmission lines Lightning strikes Malaysia Reliability assessments Reliability block diagrams Reliability Index Transmission line faults Using life Reliability analysis Ridwan M.I. Yunus B. Musa A. Yen K.L. Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
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The integrity of high voltage transmission lines is extremely important to ensure the continuous electricity supply throughout the country. Faults, such as lightning strikes and flora and fauna encroachments to the transmission lines may cause disruption of electricity supply which will affect the overall power system and lead to a wide scale blackout. Therefore, fault clearing system is deployed to minimize the impact of the faults to the power system by disconnecting and isolating the affected transmission lines specifically. One of the main components of fault clearing system are the protective relays, which are vital in providing the decision making element for correct protection and fault clearing operations. As the electric utility company in Malaysia, Tenaga Nasional Berhad (TNB) is obliged to assess the reliability of the protective relays considering its importance to the fault clearing system. In this paper, a statistical method called Life Data Analysis using Weibull Distribution is applied to assess the reliability of the protective relays. Furthermore, the fault clearing system is modeled using Reliability Block Diagram to simulate the availability of the system and derive reliability indices which will assist TNB in managing the fault clearing system. � 2012 IEEE. |
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6602280168 |
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6602280168 Ridwan M.I. Yunus B. Musa A. Yen K.L. |
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Conference paper |
author |
Ridwan M.I. Yunus B. Musa A. Yen K.L. |
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Ridwan M.I. |
title |
Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
title_short |
Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
title_full |
Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
title_fullStr |
Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
title_full_unstemmed |
Reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
title_sort |
reliability assessment of transmission line fault clearing system using life data analysis and reliability block diagram |
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2023 |
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1806428378239074304 |
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13.214268 |