Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block

With the increase of DC project voltage level and transmission capacity, the security and stability risk caused by DC blocking is gradually increasing. Aiming at reserve dispatch after ultra-high voltage direct current (UHVDC) block, scenarios of DC power modulation participating in dispatching are...

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Main Authors: Yuling Wang, Dejun Shao, Youping Xu, Xuhui Shen, Chengjin Duan, Yicong Wang, Haishun Sun
Format: Article
Language:English
Published: Wiley 2019-04-01
Series:The Journal of Engineering
Subjects:
Online Access:https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8767
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spelling doaj-be2d23e59f1243f586844a6ad896c2622021-04-02T05:36:49ZengWileyThe Journal of Engineering2051-33052019-04-0110.1049/joe.2018.8767JOE.2018.8767Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC blockYuling Wang0Dejun Shao1Youping Xu2Xuhui Shen3Chengjin Duan4Yicong Wang5Haishun Sun6State Key Lab of Advanced Electromagnetic Engineering and Technology Huazhong University of Science and TechnologyCentral China Branch of State Grid Corporation of ChinaCentral China Branch of State Grid Corporation of ChinaChina Electric Power Research InstituteState Key Lab of Advanced Electromagnetic Engineering and Technology Huazhong University of Science and TechnologyState Key Lab of Advanced Electromagnetic Engineering and Technology Huazhong University of Science and TechnologyState Key Lab of Advanced Electromagnetic Engineering and Technology Huazhong University of Science and TechnologyWith the increase of DC project voltage level and transmission capacity, the security and stability risk caused by DC blocking is gradually increasing. Aiming at reserve dispatch after ultra-high voltage direct current (UHVDC) block, scenarios of DC power modulation participating in dispatching are presented. Mathematical models of generator re-dispatching incorporated control of DC in AC/DC hybrid grid in three situations in terms of enough reserve capacity in the disturbed province, regional reserve capacity sufficient and insufficient to make up for the power deficiency are presented. Then, a decision-aid system for optimal reserve dispatch after UHVDC block is proposed. Simulation results of Central China power grid indicate that the proposed scheduling scheme can reduce the operation risks of security and load loss if necessary.https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8767HVDC power transmissionpower gridspower generation dispatchpower generation schedulingpower generation controlpower transmission controlDC power modulationmathematical modelspower deficiencyoptimal reserve dispatchUHVDC blockCentral China power gridcooperated control strategymultiHVDC modulationultra HVDC blocktransmission capacitystability riskDC blockingAC-DC hybrid grid
collection DOAJ
language English
format Article
sources DOAJ
author Yuling Wang
Dejun Shao
Youping Xu
Xuhui Shen
Chengjin Duan
Yicong Wang
Haishun Sun
spellingShingle Yuling Wang
Dejun Shao
Youping Xu
Xuhui Shen
Chengjin Duan
Yicong Wang
Haishun Sun
Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block
The Journal of Engineering
HVDC power transmission
power grids
power generation dispatch
power generation scheduling
power generation control
power transmission control
DC power modulation
mathematical models
power deficiency
optimal reserve dispatch
UHVDC block
Central China power grid
cooperated control strategy
multiHVDC modulation
ultra HVDC block
transmission capacity
stability risk
DC blocking
AC-DC hybrid grid
author_facet Yuling Wang
Dejun Shao
Youping Xu
Xuhui Shen
Chengjin Duan
Yicong Wang
Haishun Sun
author_sort Yuling Wang
title Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block
title_short Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block
title_full Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block
title_fullStr Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block
title_full_unstemmed Cooperated control strategy of generator re-dispatching and multi-HVDC modulation after ultra HVDC block
title_sort cooperated control strategy of generator re-dispatching and multi-hvdc modulation after ultra hvdc block
publisher Wiley
series The Journal of Engineering
issn 2051-3305
publishDate 2019-04-01
description With the increase of DC project voltage level and transmission capacity, the security and stability risk caused by DC blocking is gradually increasing. Aiming at reserve dispatch after ultra-high voltage direct current (UHVDC) block, scenarios of DC power modulation participating in dispatching are presented. Mathematical models of generator re-dispatching incorporated control of DC in AC/DC hybrid grid in three situations in terms of enough reserve capacity in the disturbed province, regional reserve capacity sufficient and insufficient to make up for the power deficiency are presented. Then, a decision-aid system for optimal reserve dispatch after UHVDC block is proposed. Simulation results of Central China power grid indicate that the proposed scheduling scheme can reduce the operation risks of security and load loss if necessary.
topic HVDC power transmission
power grids
power generation dispatch
power generation scheduling
power generation control
power transmission control
DC power modulation
mathematical models
power deficiency
optimal reserve dispatch
UHVDC block
Central China power grid
cooperated control strategy
multiHVDC modulation
ultra HVDC block
transmission capacity
stability risk
DC blocking
AC-DC hybrid grid
url https://digital-library.theiet.org/content/journals/10.1049/joe.2018.8767
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