Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer
With extensive access of distributed energy resources and DC loads, the traditional 10 kV AC distribution network has greatly increased the number of converters and reduced the reliability of power supply. A solid-state transformer (SST) containing AC and DC terminals to build AC/DC hybrid distribut...
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doaj-4df88e801162426e91fab74262042f982021-04-02T13:28:31ZengWileyThe Journal of Engineering2051-33052019-02-0110.1049/joe.2018.8385JOE.2018.8385Reliability calculation of AC/DC hybrid distribution network with a solid-state transformerXinxing Xu0Nengling Tai1Yan Hu2Wei Wang3Fenglei Zheng4Wenzhi He5Department of Electrical Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong UniversityDepartment of Electrical Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong UniversityDepartment of Electrical Engineering, School of Electronic Information and Electrical Engineering, Shanghai Jiao Tong UniversityInstitute of Energy Storage, Electric Power Research Institute of Guangdong Power Grid Co., Ltd.Department of Safety Production, Dongguan Power Supply Bureau, Guangdong Power Grid Co., Ltd.Department of Safety Production, Dongguan Power Supply Bureau, Guangdong Power Grid Co., Ltd.With extensive access of distributed energy resources and DC loads, the traditional 10 kV AC distribution network has greatly increased the number of converters and reduced the reliability of power supply. A solid-state transformer (SST) containing AC and DC terminals to build AC/DC hybrid distribution networks has become the focus of the current research. This study presents an AC/DC hybrid distribution network structure with 10 kV AC, 10 kV DC, ±375 V DC, and 380 V AC four voltage levels. In this network, the load is data centre, which needs high security for power supply reliability. According to the characteristics of this network, this study takes the reliability evaluation by using the minimum path set method and the state enumeration method, and the reliability of this new structure with SST is calculated. Through the study of a numerical example, the results show that after adding the multi-terminal SST, the reliability of the AC/DC hybrid distribution network is suitable for data centre load, and the quantity of the converters can decrease.https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8385power distribution controlpower system reliabilitydistributed power generationreliabilitypower distribution reliabilitypower gridsdistribution networkspower transmission reliabilitysolid-state transformerDC loadstraditional 10 kV AC distribution networkAC/DC hybrid distribution network structure10 kV DC380 V AC four voltage levelsvoltage 10.0 kVvoltage 375.0 Vvoltage 380.0 V |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xinxing Xu Nengling Tai Yan Hu Wei Wang Fenglei Zheng Wenzhi He |
spellingShingle |
Xinxing Xu Nengling Tai Yan Hu Wei Wang Fenglei Zheng Wenzhi He Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer The Journal of Engineering power distribution control power system reliability distributed power generation reliability power distribution reliability power grids distribution networks power transmission reliability solid-state transformer DC loads traditional 10 kV AC distribution network AC/DC hybrid distribution network structure 10 kV DC 380 V AC four voltage levels voltage 10.0 kV voltage 375.0 V voltage 380.0 V |
author_facet |
Xinxing Xu Nengling Tai Yan Hu Wei Wang Fenglei Zheng Wenzhi He |
author_sort |
Xinxing Xu |
title |
Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer |
title_short |
Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer |
title_full |
Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer |
title_fullStr |
Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer |
title_full_unstemmed |
Reliability calculation of AC/DC hybrid distribution network with a solid-state transformer |
title_sort |
reliability calculation of ac/dc hybrid distribution network with a solid-state transformer |
publisher |
Wiley |
series |
The Journal of Engineering |
issn |
2051-3305 |
publishDate |
2019-02-01 |
description |
With extensive access of distributed energy resources and DC loads, the traditional 10 kV AC distribution network has greatly increased the number of converters and reduced the reliability of power supply. A solid-state transformer (SST) containing AC and DC terminals to build AC/DC hybrid distribution networks has become the focus of the current research. This study presents an AC/DC hybrid distribution network structure with 10 kV AC, 10 kV DC, ±375 V DC, and 380 V AC four voltage levels. In this network, the load is data centre, which needs high security for power supply reliability. According to the characteristics of this network, this study takes the reliability evaluation by using the minimum path set method and the state enumeration method, and the reliability of this new structure with SST is calculated. Through the study of a numerical example, the results show that after adding the multi-terminal SST, the reliability of the AC/DC hybrid distribution network is suitable for data centre load, and the quantity of the converters can decrease. |
topic |
power distribution control power system reliability distributed power generation reliability power distribution reliability power grids distribution networks power transmission reliability solid-state transformer DC loads traditional 10 kV AC distribution network AC/DC hybrid distribution network structure 10 kV DC 380 V AC four voltage levels voltage 10.0 kV voltage 375.0 V voltage 380.0 V |
url |
https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8385 |
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1721564898441297920 |