An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes

Accurate calculation of short-circuit current throughout the fault ride-through process of wind turbines is a critical prerequisite for the analysis and control of modern power systems. Current studies on the short-circuit current of full-converter wind turbines primarily focus on the initial fault...

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Main Author: YUAN Shuai, XIAO Jiaan, TAO Jun, CUI Haohan, CHAO Pupu, LI Weixing, A Minfu, WANG Liqiang, ZHONG Ming
Format: Article
Language:zho
Published: Editorial Department of Electric Power Construction 2025-03-01
Series:Dianli jianshe
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Online Access:https://www.cepc.com.cn/fileup/1000-7229/PDF/1740549399004-909584974.pdf
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author YUAN Shuai, XIAO Jiaan, TAO Jun, CUI Haohan, CHAO Pupu, LI Weixing, A Minfu, WANG Liqiang, ZHONG Ming
author_facet YUAN Shuai, XIAO Jiaan, TAO Jun, CUI Haohan, CHAO Pupu, LI Weixing, A Minfu, WANG Liqiang, ZHONG Ming
author_sort YUAN Shuai, XIAO Jiaan, TAO Jun, CUI Haohan, CHAO Pupu, LI Weixing, A Minfu, WANG Liqiang, ZHONG Ming
collection DOAJ
description Accurate calculation of short-circuit current throughout the fault ride-through process of wind turbines is a critical prerequisite for the analysis and control of modern power systems. Current studies on the short-circuit current of full-converter wind turbines primarily focus on the initial fault stage, with limited attention given to the entire fault ride-through process. This paper presents a comprehensive analysis of the dynamic behavior of short-circuit current across the entire fault ride-through process, based on the manufacturer-packaged model of a practical full-converter wind turbine. A complete model of the turbine’s control strategy is constructed to derive analytical expressions for the transient behavior across four key stages: fault occurrence transient, steady-state during fault duration, post-fault transient, and post-fault recovery. An analytical method for calculating short-circuit current throughout the fault ride-through process is proposed. The validity of the proposed method is demonstrated by comparing the analytical calculation results with short-circuit current test results obtained from the manufacturer’s black-box packaged model.
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id doaj-art-a187b0a0692e42bb9d8bdb0acd6d38ca
institution DOAJ
issn 1000-7229
language zho
publishDate 2025-03-01
publisher Editorial Department of Electric Power Construction
record_format Article
series Dianli jianshe
spelling doaj-art-a187b0a0692e42bb9d8bdb0acd6d38ca2025-08-20T02:45:34ZzhoEditorial Department of Electric Power ConstructionDianli jianshe1000-72292025-03-01463859410.12204/j.issn.1000-7229.2025.03.007An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through ProcessesYUAN Shuai, XIAO Jiaan, TAO Jun, CUI Haohan, CHAO Pupu, LI Weixing, A Minfu, WANG Liqiang, ZHONG Ming01. Inner Mongolia Power Research Institute Branch, Inner Mongolia Power (Group) Co., Ltd., Hohhot 010020, China;2. School of Electrical Engineering and Automation, Harbin Institute of Technology, Harbin 150001, China;3. School of Electrical Engineering, Dalian University of Technology, Dalian 116081, Liaoning Province, ChinaAccurate calculation of short-circuit current throughout the fault ride-through process of wind turbines is a critical prerequisite for the analysis and control of modern power systems. Current studies on the short-circuit current of full-converter wind turbines primarily focus on the initial fault stage, with limited attention given to the entire fault ride-through process. This paper presents a comprehensive analysis of the dynamic behavior of short-circuit current across the entire fault ride-through process, based on the manufacturer-packaged model of a practical full-converter wind turbine. A complete model of the turbine’s control strategy is constructed to derive analytical expressions for the transient behavior across four key stages: fault occurrence transient, steady-state during fault duration, post-fault transient, and post-fault recovery. An analytical method for calculating short-circuit current throughout the fault ride-through process is proposed. The validity of the proposed method is demonstrated by comparing the analytical calculation results with short-circuit current test results obtained from the manufacturer’s black-box packaged model.https://www.cepc.com.cn/fileup/1000-7229/PDF/1740549399004-909584974.pdffull-power wind turbines|entire process of fault ride-through|short-circuit current|analytical calculation
spellingShingle YUAN Shuai, XIAO Jiaan, TAO Jun, CUI Haohan, CHAO Pupu, LI Weixing, A Minfu, WANG Liqiang, ZHONG Ming
An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes
Dianli jianshe
full-power wind turbines|entire process of fault ride-through|short-circuit current|analytical calculation
title An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes
title_full An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes
title_fullStr An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes
title_full_unstemmed An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes
title_short An Analytical Short-Circuit Current Calculation Method for Full-Power Wind Turbines under Complete Fault Ride-Through Processes
title_sort analytical short circuit current calculation method for full power wind turbines under complete fault ride through processes
topic full-power wind turbines|entire process of fault ride-through|short-circuit current|analytical calculation
url https://www.cepc.com.cn/fileup/1000-7229/PDF/1740549399004-909584974.pdf
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