Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF

HAPF (high voltage active power filter) and SVG (static var generator), which are specially used for filtering in large-capacity HVDC projects, are configured in the Min-Yue back-to-back HVDC transmission project to meet the filtering requirements and reactive power support on both sides of the conv...

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Main Authors: Xiao LEI, Ruiwen XU, Ningmin ZHENG, Decai LI, Shicheng LIU
Format: Article
Language:zho
Published: State Grid Energy Research Institute 2024-04-01
Series:Zhongguo dianli
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Online Access:https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202306033
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author Xiao LEI
Ruiwen XU
Ningmin ZHENG
Decai LI
Shicheng LIU
author_facet Xiao LEI
Ruiwen XU
Ningmin ZHENG
Decai LI
Shicheng LIU
author_sort Xiao LEI
collection DOAJ
description HAPF (high voltage active power filter) and SVG (static var generator), which are specially used for filtering in large-capacity HVDC projects, are configured in the Min-Yue back-to-back HVDC transmission project to meet the filtering requirements and reactive power support on both sides of the converter station respectively. In this paper, according to the characteristics of the Min-Yue project, a complete live commissioning scheme of the HVDC system and a collaborative operation test scheme of HAPF, SVG and HVDC are proposed, which have verified the availability of the equipment and its compatibility with the HVDC system. In view of the SVG fault events in actual operation, the complex problems caused by multiple factors in the process of high voltage transient response of SVG are analyzed in depth, and according to the targeted optimization control strategy, a high voltage/low voltage/three-phase unbalanced transient control test scheme of single SVG equipment is proposed. And a system test scheme is also proposed to verify the overall control strategy of the whole process of SVG and HVDC system under SVG fault. The correctness and effectiveness of the optimization strategy are verified through field implementation.
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publishDate 2024-04-01
publisher State Grid Energy Research Institute
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series Zhongguo dianli
spelling doaj-art-f2aef0fc685d48afbc37e384e96da5c32025-08-20T01:58:24ZzhoState Grid Energy Research InstituteZhongguo dianli1004-96492024-04-0157413013810.11930/j.issn.1004-9649.202306033zgdl-57-03-leixiaoCharacteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPFXiao LEI0Ruiwen XU1Ningmin ZHENG2Decai LI3Shicheng LIU4China Electric Power Research Institute, Beijing 100192, ChinaChina Electric Power Research Institute, Beijing 100192, ChinaMinyue Interconnection Power Operation Co., Ltd., Zhangzhou 363005, ChinaChina Electric Power Research Institute, Beijing 100192, ChinaChina Electric Power Research Institute, Beijing 100192, ChinaHAPF (high voltage active power filter) and SVG (static var generator), which are specially used for filtering in large-capacity HVDC projects, are configured in the Min-Yue back-to-back HVDC transmission project to meet the filtering requirements and reactive power support on both sides of the converter station respectively. In this paper, according to the characteristics of the Min-Yue project, a complete live commissioning scheme of the HVDC system and a collaborative operation test scheme of HAPF, SVG and HVDC are proposed, which have verified the availability of the equipment and its compatibility with the HVDC system. In view of the SVG fault events in actual operation, the complex problems caused by multiple factors in the process of high voltage transient response of SVG are analyzed in depth, and according to the targeted optimization control strategy, a high voltage/low voltage/three-phase unbalanced transient control test scheme of single SVG equipment is proposed. And a system test scheme is also proposed to verify the overall control strategy of the whole process of SVG and HVDC system under SVG fault. The correctness and effectiveness of the optimization strategy are verified through field implementation.https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202306033hvdchapfsvgback-to-back dc systemdc control and protection system
spellingShingle Xiao LEI
Ruiwen XU
Ningmin ZHENG
Decai LI
Shicheng LIU
Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF
Zhongguo dianli
hvdc
hapf
svg
back-to-back dc system
dc control and protection system
title Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF
title_full Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF
title_fullStr Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF
title_full_unstemmed Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF
title_short Characteristics and Commissioning of the Collaboration Between the Min-Yue Back-to-Back HVDC Transmission System and SVG/HAPF
title_sort characteristics and commissioning of the collaboration between the min yue back to back hvdc transmission system and svg hapf
topic hvdc
hapf
svg
back-to-back dc system
dc control and protection system
url https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.202306033
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AT ningminzheng characteristicsandcommissioningofthecollaborationbetweentheminyuebacktobackhvdctransmissionsystemandsvghapf
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