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Hybrid Control Strategy for AC Voltage Stabilization in Bipolar VSC-MTDC

机译:双极VSC-MTDC中交流稳压的混合控制策略

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摘要

Using VSC-MTDC for wind farm integration is considered to be a promising solution. In order to provide a stable ac voltage control and avoid active power control conflicts, the amplitude-phase control strategy, rather than the active/reactive power decoupled control strategy, is generally applied for the VSC connected to wind farms. However, using such a control strategy, the flexibility of power flow control will be partly lost. As the positive and negative pole dc networks in the bipolar VSC-MTDC can operate independently, a novel hybrid control strategy is proposed in this paper. In the proposed hybrid control strategy, the amplitude-phase control and active/reactive power decoupled control can be applied to the positive and negative poles, respectively. Hence, the hybrid strategy combines the advantages of the amplitude-phase control and active/reactive power decoupled control and can be adapted to bipolar VSC-MTDC for large-scale wind farm integration. Simulation results using PSCAD show that the hybrid control strategy can provide the stable ac voltage control and active/reactive power flow control for the integration of wind farms; moreover, such a hybrid control strategy is helpful to avoid the overload of dc lines, stabilize the dc voltage, and enhance the power transfer capability.
机译:使用VSC-MTDC进行风电场集成被认为是一个有前途的解决方案。为了提供稳定的交流电压控制并避免有功功率控制冲突,通常将幅相控制策略而不是有功/无功去耦控制策略用于连接到风电场的VSC。然而,使用这种控制策略,将部分失去功率流控制的灵活性。由于双极性VSC-MTDC中的正负直流网络可以独立运行,因此提出了一种新颖的混合控制策略。在提出的混合控制策略中,幅度相位控制和有功/无功功率解耦控制可以分别应用于正极和负极。因此,混合策略结合了幅度相位控制和有功/无功功率解耦控制的优点,并且可以适用于双极VSC-MTDC进行大规模风电场集成。 PSCAD的仿真结果表明,混合控制策略可以为风电场的集成提供稳定的交流电压控制和有功/无功潮流控制。此外,这种混合控制策略有助于避免直流线路的过载,稳定直流电压并增强功率传输能力。

著录项

  • 来源
    《Power Systems, IEEE Transactions on》 |2019年第1期|129-139|共11页
  • 作者单位

    School of Electrical Engineering, Southeast University, Nanjing, China;

    School of Electrical Engineering, Southeast University, Nanjing, China;

    School of Electrical Engineering, Southeast University, Nanjing, China;

    School of Electrical Engineering, Southeast University, Nanjing, China;

    School of Electrical Engineering, Southeast University, Nanjing, China;

    Department of Electronic Electrical and Systems Engineering, School of Engineering, University of Birmingham, Birmingham, U.K.;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Power conversion; Voltage control; Wind farms; Hybrid power systems; HVDC transmission; Reactive power;

    机译:功率转换;电压控制;风电场;混合动力系统;高压直流输电;无功功率;

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