A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters
With the increase of extreme natural disasters and the frequent occurrence of man-made attacks, resilience studies of power grids have attracted much attention, among which resilience assessment reflects the resistance and resilience of power systems to cope with extreme disasters. To improve the re...
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Format: | Article |
Language: | English |
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IEEE
2021-01-01
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Series: | IEEE Access |
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Online Access: | https://ieeexplore.ieee.org/document/9618922/ |
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author | Yuantao Wang Tianen Huang Xiang Li Jian Tang Zhenjie Wu Yajun Mo Lin Xue Yixi Zhou Tao Niu Sicong Sun |
author_facet | Yuantao Wang Tianen Huang Xiang Li Jian Tang Zhenjie Wu Yajun Mo Lin Xue Yixi Zhou Tao Niu Sicong Sun |
author_sort | Yuantao Wang |
collection | DOAJ |
description | With the increase of extreme natural disasters and the frequent occurrence of man-made attacks, resilience studies of power grids have attracted much attention, among which resilience assessment reflects the resistance and resilience of power systems to cope with extreme disasters. To improve the resilience of distribution grids under extreme weather conditions, this paper proposes a resilience assessment framework for distribution grids under typhoon disasters. First, a probabilistic generation model of typhoon is established. Second, a spatiotemporal vulnerability model of the distribution grid lines to quantify the spatiotemporal impacts of typhoon. Third, a breadth-first search algorithm is used to island the distribution grid, and the amount of load shedding of the islanded microgrid is calculated. Meanwhile, the resilience of the distribution grid was quantitatively assessed according to the proposed new resilience index. Finally, the feasibility of the proposed resilience assessment method is verified in the IEEE 33-bus test system, and the results show that the proposed method can accurately account for the impact of typhoon on the distribution grid and provides a quantitative reference basis for later power system planning and scheduling. |
first_indexed | 2024-12-19T00:35:23Z |
format | Article |
id | doaj.art-aea06a1ef0e7460f9c3532fc5ca89616 |
institution | Directory Open Access Journal |
issn | 2169-3536 |
language | English |
last_indexed | 2024-12-19T00:35:23Z |
publishDate | 2021-01-01 |
publisher | IEEE |
record_format | Article |
series | IEEE Access |
spelling | doaj.art-aea06a1ef0e7460f9c3532fc5ca896162022-12-21T20:44:52ZengIEEEIEEE Access2169-35362021-01-01915522415523310.1109/ACCESS.2021.31289679618922A Resilience Assessment Framework for Distribution Systems Under Typhoon DisastersYuantao Wang0Tianen Huang1Xiang Li2Jian Tang3Zhenjie Wu4Yajun Mo5Lin Xue6Yixi Zhou7Tao Niu8https://orcid.org/0000-0003-4461-9481Sicong Sun9State Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Key Laboratory of Power Transmission Equipment and System Security and New Technology, Chongqing University, Chongqing, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaState Key Laboratory of Power Transmission Equipment and System Security and New Technology, Chongqing University, Chongqing, ChinaState Grid Hangzhou Power Supply Company, Hangzhou, ChinaWith the increase of extreme natural disasters and the frequent occurrence of man-made attacks, resilience studies of power grids have attracted much attention, among which resilience assessment reflects the resistance and resilience of power systems to cope with extreme disasters. To improve the resilience of distribution grids under extreme weather conditions, this paper proposes a resilience assessment framework for distribution grids under typhoon disasters. First, a probabilistic generation model of typhoon is established. Second, a spatiotemporal vulnerability model of the distribution grid lines to quantify the spatiotemporal impacts of typhoon. Third, a breadth-first search algorithm is used to island the distribution grid, and the amount of load shedding of the islanded microgrid is calculated. Meanwhile, the resilience of the distribution grid was quantitatively assessed according to the proposed new resilience index. Finally, the feasibility of the proposed resilience assessment method is verified in the IEEE 33-bus test system, and the results show that the proposed method can accurately account for the impact of typhoon on the distribution grid and provides a quantitative reference basis for later power system planning and scheduling.https://ieeexplore.ieee.org/document/9618922/Vulnerability modelresilience assessmentisland divisionresilience index |
spellingShingle | Yuantao Wang Tianen Huang Xiang Li Jian Tang Zhenjie Wu Yajun Mo Lin Xue Yixi Zhou Tao Niu Sicong Sun A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters IEEE Access Vulnerability model resilience assessment island division resilience index |
title | A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters |
title_full | A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters |
title_fullStr | A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters |
title_full_unstemmed | A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters |
title_short | A Resilience Assessment Framework for Distribution Systems Under Typhoon Disasters |
title_sort | resilience assessment framework for distribution systems under typhoon disasters |
topic | Vulnerability model resilience assessment island division resilience index |
url | https://ieeexplore.ieee.org/document/9618922/ |
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