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Modeling, Analysis and Mitigation of Sub-Synchronous Interactions between Full- and Partial-Scale Voltage-Source Converters and Power Networks.

机译:满量程和部分量程电压源转换器与电网之间次同步相互作用的建模,分析和缓解。

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摘要

Voltage-source converters (VSCs) have gained widespread acceptance in modern power systems. The stability and dynamics of power systems involving these devices have recently become salient issues. In the small-signal sense, the dynamics of VSC-based systems is dictated by its incremental output impedance, which is formed by a combination of 'passive' circuit components and 'active' control elements. Control elements such as control parameters, control loops, and control topologies play a significant role in shaping the impedance profile. Depending on the control schemes and strategies used, VSC-based systems can exhibit different incremental impedance dynamics. As the control elements and dynamics are involved in the impedance structure, the frequency-dependent output impedance might have a negative real-part (i.e., a negative resistance). In the grid-connected mode, the negative resistance degrades the system damping and negatively impacts the stability. In high-voltage networks where high-power VSC-based systems are usually employed and where sub-synchronous dynamics usually exist, integrating large VSC-based systems might reduce the overall damping and results in unstable dynamics.;The objectives of this thesis are to (1) investigate and analyze the output impedance properties under different control strategies and control functions, (2) identify and characterize the key contributors to the impedance and sub-synchronous damping profiles, and (3) propose mitigation techniques to minimize and eliminate the negative impact associated with integrating VSC-based systems into power systems. Different VSC configurations are considered in this thesis; in particular, the full-scale and partial-scale topologies (doubly fed-induction generators) are addressed. Additionally, the impedance and system damping profiles are studied under two different control strategies: the standard vector control strategy and the recently-developed power synchronization control strategy. Furthermore, this thesis proposes a simple and robust technique for damping the sub-synchronous resonance in a power system.
机译:电压源转换器(VSC)已在现代电力系统中得到广泛认可。涉及这些设备的电力系统的稳定性和动态性最近已成为突出问题。在小信号意义上,基于VSC的系统的动态性取决于其增量输出阻抗,该阻抗由“无源”电路组件和“有源”控制元件的组合形成。控制元素(例如控制参数,控制回路和控制拓扑)在塑造阻抗曲线中起着重要作用。根据使用的控制方案和策略,基于VSC的系统可能会表现出不同的增量阻抗动态。由于在阻抗结构中涉及控制元件和动力学特性,因此与频率相关的输出阻抗可能具有负实部(即负电阻)。在并网模式下,负电阻会降低系统阻尼,并对稳定性产生负面影响。在通常采用基于大功率VSC的系统且通常存在次同步动态的高压网络中,集成大型基于VSC的系统可能会降低整体阻尼并导致动态不稳定。 (1)研究和分析不同控制策略和控制功能下的输出阻抗特性;(2)识别和表征阻抗和次同步阻尼曲线的关键因素;(3)提出缓解技术以最小化并消除负面影响与将基于VSC的系统集成到电源系统相关的影响。本文考虑了不同的VSC配置。特别地,解决了全比例和局部比例的拓扑(双馈感应发电机)。另外,在两种不同的控制策略下研究了阻抗和系统阻尼曲线:标准矢量控制策略和最近开发的功率同步控制策略。此外,本文提出了一种用于抑制电力系统中次同步谐振的简单而鲁棒的技术。

著录项

  • 作者

    Alawasa, Khaled Mohammad.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Electrical engineering.;Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

  • 入库时间 2022-08-17 11:53:40

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