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Co-ordination of Converter Controls and an Analysis of Converter Operating Limits in VSC-HVdc Grids.

机译:VSC-HVdc电网中变流器控制的协调和变流器运行极限的分析。

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摘要

This thesis presents an investigation into the power transmission limitations imposed on a VSC-HVdc converter by ac system strength and ac system impedance characteristics, quantified by the short circuit ratio (SCR). An important result of this study is that the operation of the converter is not only affected by the SCR's magnitude, but is also significantly affected by the ac system's impedance angle at the fundamental frequency. As the ac impedance becomes more resistive, the minimum SCR required at the rectifier side increases from that required for ideally inductive ac impedance, but it decreases at the inverter side. The finite megavolt ampere (MVA) limit of the VSC imposes a further limitation on power transfer, requiring an increase in the value of the minimum SCR. This limitation can be mitigated if additional reactive power support is provided at the point-common-connection.;A state-space VSC model was developed and validated with a fully detailed non-linear EMT model. The model showed that gains of the phased-locked-loop (PLL), particularly at low SCRs greatly affect the operation of the VSC-HVdc converter and that operation at low SCRs below about 1.6 is difficult. The model also shows that the theoretically calculated power-voltage stability limit is not attainable in practice, but can be approached if the PLL gains are reduced.;The thesis shows that as the VSC-HVdc converter is subject to large signal excitation, a good controller design cannot rely on small signal analysis alone. The thesis therefore proposes the application of optimization tools to coordinate the controls of multiple converters in a dc grid. A new method, the "single converter relaxation method", is proposed and validated. The design procedure of control gains selection using the single converter relaxation method for a multi-converter system is developed. A new method for selecting robust control gains to permit operation over a range of operation conditions is presented. The coordination and interaction of control parameters of multi-terminal VSC are discussed.;Using the SCR information at converter bus, the gain scheduling approach to optimal gains is possible. However, compared to robust control gains setting, this approach is more susceptible to system instability.
机译:本文研究了由交流系统强度和交流系统阻抗特性(通过短路比(SCR)来量化)对VSC-HVdc转换器施加的功率传输限制。这项研究的重要结果是,转换器的工作不仅受SCR幅度的影响,而且还受交流系统在基频处的阻抗角的影响很大。随着交流阻抗变得更具电阻性,整流器侧所需的最小SCR比理想电感性交流阻抗所需的最小SCR增大,但在逆变器侧则减小。 VSC的有限兆伏安(MVA)限制进一步限制了功率传输,需要增加最小SCR的值。如果在点公共连接处提供附加的无功功率支持,则可以减轻此限制。开发了状态空间VSC模型,并使用了详细的非线性EMT模型进行了验证。该模型表明,锁相环(PLL)的增益,特别是在低SCR时,极大地影响了VSC-HVdc转换器的工作,而在低于1.6的低SCR时则很难工作。该模型还表明,在实践中无法达到理论上计算出的电源-电压稳定极限,但如果降低PLL增益,则可以达到该极限。论文表明,由于VSC-HVdc转换器会受到大信号激励,控制器设计不能仅依靠小信号分析。因此,本文提出了优化工具的应用,以协调直流电网中多个转换器的控制。提出并验证了一种新方法“单转换器松弛法”。提出了采用单变换器松弛法进行多变换器系统控制增益选择的设计程序。提出了一种新的方法,用于选择鲁棒的控制增益以允许在一定范围的操作条件下进行操作。讨论了多端子VSC控制参数的协调和交互作用。利用转换器总线上的SCR信息,可以实现最优增益的增益调度方法。但是,与鲁棒的控制增益设置相比,这种方法更容易受到系统不稳定的影响。

著录项

  • 作者

    Zhou, Zheng Jenny.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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