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DRU-HVDC系统海上风电场黑启动与协同控制策略研究

张震霄 陶俊 蔡宗霖 花斌 赵志坚 温德圣

能源工程2024,Vol.44Issue(6):116-122,7.
能源工程2024,Vol.44Issue(6):116-122,7.DOI:10.16189/j.nygc.2024.06.014

DRU-HVDC系统海上风电场黑启动与协同控制策略研究

Research on black start and collaborative control strategy of DRU-HVDC offshore wind farm system

张震霄 1陶俊 1蔡宗霖 1花斌 1赵志坚 1温德圣1

作者信息

  • 1. 运达能源科技集团股份有限公司,浙江 杭州 310012
  • 折叠

摘要

Abstract

With the shift of wind power development from onshore and inshore to distant offshore,the wind power integration scheme based on diode rectified DC transmission has become one of the research highligths due to its economic advantages.Due to the unidirectionality of diode power transmission,offshore wind farms cannot rely on onshore power grids for start-up.In this case,wind turbines adopt grid-forming control can realize the black start for the offshore wind farm.First,the structure and characteristics of the diode rectified DC transmission system for offshore wind power was analyzed,and then a control strategy for DFIG with the function of dual-mode switching which is suitable for this scenario was proposed.Next,the phase presynchronization strategy of wind turbines during process of grid connection was studied.On this basis,a black start strategy for offshore wind farms was proposed.Then,a layered control structure for offshore wind farms was designed,and a collaborative control strategy based on high-speed communication and mode switching was proposed considering the N-1 fault condition.At last,the simulation model of the offshore wind farm transmission system through diode rectification was established in matlab/simulink.The process of the offshore wind farm black start and the N-1 fault condition were simulated,the simulation results verify the effectiveness of the proposed black start strategy and collaborative control strategy for N-1 fault.

关键词

构网型风电机组/不控二极管整流单元/黑启动/协同控制/模式切换

Key words

grid-forming wind turbine/DRU/black start/collaborative control/mode switch

分类

信息技术与安全科学

引用本文复制引用

张震霄,陶俊,蔡宗霖,花斌,赵志坚,温德圣..DRU-HVDC系统海上风电场黑启动与协同控制策略研究[J].能源工程,2024,44(6):116-122,7.

基金项目

浙江省"尖兵领雁+X"研发攻关计划项目(2024C01177) (2024C01177)

能源工程

1004-3950

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