Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization

Under the influences of AC-DC coupling, uncoordinated network-source development, and new energies that fail to meet the demand of grid-related performance, power system stability is becoming a point of extreme gravity. The correlation characteristics of transient voltage and power angle stability o...

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Main Authors: WANG Bowen, WANG Longfei, DONG Wei, ZHUO Guying, HUA Wen, SHENTU Leixuan
Format: Article
Language:zho
Published: zhejiang electric power 2023-03-01
Series:Zhejiang dianli
Subjects:
Online Access:https://zjdl.cbpt.cnki.net/WKE3/WebPublication/paperDigest.aspx?paperID=23b1d608-c62c-423e-b65b-edf65e413c3b
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author WANG Bowen
WANG Longfei
DONG Wei
ZHUO Guying
HUA Wen
SHENTU Leixuan
author_facet WANG Bowen
WANG Longfei
DONG Wei
ZHUO Guying
HUA Wen
SHENTU Leixuan
author_sort WANG Bowen
collection DOAJ
description Under the influences of AC-DC coupling, uncoordinated network-source development, and new energies that fail to meet the demand of grid-related performance, power system stability is becoming a point of extreme gravity. The correlation characteristics of transient voltage and power angle stability of the receiving-end grid are analyzed. Two transient instability modes with transient voltage and transient power angle instability as the dominant causal factors and their specific evolution processes are discussed based on the transient stability mechanism. Afterward, the effects of the optimal control measures on grid layout, power structure, network-source coordination, power distribution, and source-load interaction on optimizing the transient stability are reviewed and verified, and the traditional stability control measure of limiting unit output is not adopted. The study of the evolution of transient instability patterns and simulation analysis provides a reliable reference for identifying transient instability scenarios of key units in the receiving-end grid and formulating control measures.
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spelling doaj.art-f8fec1c4bcc24d8591844c66c0a4f6822023-04-06T08:17:34Zzhozhejiang electric powerZhejiang dianli1007-18812023-03-01423717810.19585/j.zjdl.2023030091007-1881(2023)03-0071-08Recognition of transient instability scenarios of the receiving-end grid and control strategy optimizationWANG Bowen0WANG Longfei1DONG Wei2ZHUO Guying3HUA Wen4SHENTU Leixuan5State Grid Zhejiang Electric Power Co., Ltd. Research Institute, Hangzhou 310014, ChinaState Grid Zhejiang Electric Power Co., Ltd. Research Institute, Hangzhou 310014, ChinaState Grid Zhejiang Electric Power Co., Ltd. Research Institute, Hangzhou 310014, ChinaChina Electric Power Research Institute, Beijing 100080, ChinaState Grid Zhejiang Electric Power Co., Ltd. Research Institute, Hangzhou 310014, ChinaState Grid Zhejiang Electric Power Co., Ltd. Research Institute, Hangzhou 310014, ChinaUnder the influences of AC-DC coupling, uncoordinated network-source development, and new energies that fail to meet the demand of grid-related performance, power system stability is becoming a point of extreme gravity. The correlation characteristics of transient voltage and power angle stability of the receiving-end grid are analyzed. Two transient instability modes with transient voltage and transient power angle instability as the dominant causal factors and their specific evolution processes are discussed based on the transient stability mechanism. Afterward, the effects of the optimal control measures on grid layout, power structure, network-source coordination, power distribution, and source-load interaction on optimizing the transient stability are reviewed and verified, and the traditional stability control measure of limiting unit output is not adopted. The study of the evolution of transient instability patterns and simulation analysis provides a reliable reference for identifying transient instability scenarios of key units in the receiving-end grid and formulating control measures.https://zjdl.cbpt.cnki.net/WKE3/WebPublication/paperDigest.aspx?paperID=23b1d608-c62c-423e-b65b-edf65e413c3breceiving-end gridtransient stabilityinstability scenarioscontrol strategy
spellingShingle WANG Bowen
WANG Longfei
DONG Wei
ZHUO Guying
HUA Wen
SHENTU Leixuan
Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization
Zhejiang dianli
receiving-end grid
transient stability
instability scenarios
control strategy
title Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization
title_full Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization
title_fullStr Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization
title_full_unstemmed Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization
title_short Recognition of transient instability scenarios of the receiving-end grid and control strategy optimization
title_sort recognition of transient instability scenarios of the receiving end grid and control strategy optimization
topic receiving-end grid
transient stability
instability scenarios
control strategy
url https://zjdl.cbpt.cnki.net/WKE3/WebPublication/paperDigest.aspx?paperID=23b1d608-c62c-423e-b65b-edf65e413c3b
work_keys_str_mv AT wangbowen recognitionoftransientinstabilityscenariosofthereceivingendgridandcontrolstrategyoptimization
AT wanglongfei recognitionoftransientinstabilityscenariosofthereceivingendgridandcontrolstrategyoptimization
AT dongwei recognitionoftransientinstabilityscenariosofthereceivingendgridandcontrolstrategyoptimization
AT zhuoguying recognitionoftransientinstabilityscenariosofthereceivingendgridandcontrolstrategyoptimization
AT huawen recognitionoftransientinstabilityscenariosofthereceivingendgridandcontrolstrategyoptimization
AT shentuleixuan recognitionoftransientinstabilityscenariosofthereceivingendgridandcontrolstrategyoptimization