Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode
Compared with the typical Ultra HVDC (UHVDC) system, the inverters of the UHVDC system with a hierarchical connection mode (UHVDC-HCM), connect two receiving-end systems with different operational conditions. This requires the corresponding conversion units (CUs) at the different terminals to be dif...
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China electric power research institute
2019-03-01
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doaj-704fe0d25c2a4656ba9c9b0c5ac106252020-11-25T01:40:37ZengChina electric power research instituteCSEE Journal of Power and Energy Systems2096-00422096-00422019-03-0151738110.17775/CSEEJPES.2017.00990Reliability evaluation of UHVDC transmission systems with a hierarchical connection modeShenghu Li0Zhengyang Wu1Yuting Hua2School of Electrical Engineering and Automation, Hefei University of Technology, Hefei 230009, ChinaSchool of Electrical Engineering and Automation, Hefei University of Technology, Hefei 230009, ChinaSchool of Electrical Engineering and Automation, Hefei University of Technology, Hefei 230009, ChinaCompared with the typical Ultra HVDC (UHVDC) system, the inverters of the UHVDC system with a hierarchical connection mode (UHVDC-HCM), connect two receiving-end systems with different operational conditions. This requires the corresponding conversion units (CUs) at the different terminals to be differentiated in reliability modeling, and the spares should also be separately set. A reliability model of the UHVDC-HCM system is proposed in this paper. The operating modes are classified by the capacities of the total system and the transmission powers to the two receiving-ends. Considering the independent spares of the components of the CUs at different terminals, the state space is derived. Two sets of indices are newly proposed to more accurately evaluate the system reliability. Based on the matrix description of the frequency & duration (F&D) method, the sensitivities of the reliability indices to the reliability parameters of the components are quantified. Numerical results validate the feasibility of the proposed model. The vulnerabilities are recognized by the sensitivity analysis, and the impact of different spare schemes on the reliability indices and sensitivities are compared. The proposed model and indices provide a reference for the practical UHVDC-HCM projects.https://ieeexplore.ieee.org/document/8680636 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shenghu Li Zhengyang Wu Yuting Hua |
spellingShingle |
Shenghu Li Zhengyang Wu Yuting Hua Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode CSEE Journal of Power and Energy Systems |
author_facet |
Shenghu Li Zhengyang Wu Yuting Hua |
author_sort |
Shenghu Li |
title |
Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode |
title_short |
Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode |
title_full |
Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode |
title_fullStr |
Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode |
title_full_unstemmed |
Reliability evaluation of UHVDC transmission systems with a hierarchical connection mode |
title_sort |
reliability evaluation of uhvdc transmission systems with a hierarchical connection mode |
publisher |
China electric power research institute |
series |
CSEE Journal of Power and Energy Systems |
issn |
2096-0042 2096-0042 |
publishDate |
2019-03-01 |
description |
Compared with the typical Ultra HVDC (UHVDC) system, the inverters of the UHVDC system with a hierarchical connection mode (UHVDC-HCM), connect two receiving-end systems with different operational conditions. This requires the corresponding conversion units (CUs) at the different terminals to be differentiated in reliability modeling, and the spares should also be separately set. A reliability model of the UHVDC-HCM system is proposed in this paper. The operating modes are classified by the capacities of the total system and the transmission powers to the two receiving-ends. Considering the independent spares of the components of the CUs at different terminals, the state space is derived. Two sets of indices are newly proposed to more accurately evaluate the system reliability. Based on the matrix description of the frequency & duration (F&D) method, the sensitivities of the reliability indices to the reliability parameters of the components are quantified. Numerical results validate the feasibility of the proposed model. The vulnerabilities are recognized by the sensitivity analysis, and the impact of different spare schemes on the reliability indices and sensitivities are compared. The proposed model and indices provide a reference for the practical UHVDC-HCM projects. |
url |
https://ieeexplore.ieee.org/document/8680636 |
work_keys_str_mv |
AT shenghuli reliabilityevaluationofuhvdctransmissionsystemswithahierarchicalconnectionmode AT zhengyangwu reliabilityevaluationofuhvdctransmissionsystemswithahierarchicalconnectionmode AT yutinghua reliabilityevaluationofuhvdctransmissionsystemswithahierarchicalconnectionmode |
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1725044631296540672 |