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Impact of frequency control from wind turbine generator linked to HVDC system on sub-synchronous oscillation

机译:与高压直流输电系统相连的风力发电机组频率控制对次同步振荡的影响

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摘要

With global trends of carbon neutrality, offshore wind energy is considered as the most promising resource. However, as large-scale renewable energy resources replace the existing synchronous generators (SG), concerns about the system stability are growing. Owing to the absence of system supports provided by the SG. Therefore, operators require the wind generators to participate in frequency control. In addition, controls have been devised to perform frequency support even when large-scale offshore wind farm (OWF) linked to High Voltage Direct Current (HVDC). However, this frequency support control's impacts on the overall system stability are not investigated in deeply yet. Therefore, in this study, the impacts of frequency control from OWF-linked HVDC system using communication-less scheme on the system instability were investigated using small-signal stability analysis. Its results revealed that this frequency support control caused instability. Modal analysis and simulations support these interpretations and improve the understanding its mechanism and dynamics. (c) 2023 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:随着全球碳中和趋势,海上风能被认为是最有前途的资源。然而,随着大规模可再生能源取代现有的同步发电机(SG),对系统稳定性的担忧正在增加。由于缺乏SG提供的系统支持。因此,运营商要求风力发电机参与频率控制。此外,即使大型海上风电场 (OWF) 连接到高压直流电 (HVDC),也可以设计控制装置来执行频率支持。然而,这种频率支持控制对整体系统稳定性的影响尚未得到深入研究。因此,本研究采用小信号稳定性分析研究了采用无通信方案的OWF联接HVDC系统的频率控制对系统不稳定性的影响。其结果表明,这种频率支持控制导致了不稳定性。模态分析和模拟支持这些解释,并改善了对其机制和动力学的理解。(c) 2023 作者。由以下开发商制作:Elsevier Ltd.这是 CC BY-NC-ND 许可 (http://creativecommons.org/licenses/by-nc-nd/4.0/) 下的开放获取文章。

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