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Modeling and control of a doubly-fed induction generator for wind turbine-generator systems.

机译:用于风力发电机系统的双馈感应发电机的建模和控制。

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摘要

Wind energy plays an increasingly important role in the world because it is friendly to the environment. During the last decades, the concept of a variable-speed wind turbine (WT) has been receiving increasing attention due to the fact that it is more controllable and efficient, and has good power quality. As the demand of controllability of variable speed WTs increases, it is therefore important and necessary to investigate the modeling for wind turbine-generator systems (WTGS) that are capable of accurately simulating the behavior of each component in the WTGS. Therefore, this thesis will provide detailed models of a grid-connected wind turbine system equipped with a doubly-fed induction generator (DFIG), which includes the aerodynamic models of the wind turbine, the models of the mechanical transmission system, the DFIG models and the three-phase two-level PWM voltage source converter models.;In order to obtain satisfying output power from the WTGS, control strategies are also necessary to be developed based on the previously obtained WTGS models. These control schemes include the grid-side converter control, the generator-side converter control, the maximum power point tracking control and the pitch angle control. The grid-side converter controller is used to keep the DC-link voltage constant and yield a unity power factor looking into the WTGS from the grid-side. The generator-side converter controller has the ability of regulating the torque, active power and reactive power. The maximum power point tracking control is used to provide the reference values for the active power at the stator terminals. The pitch angle control scheme is used to regulate the pitch angle and thus keep the output power at rated value even when the wind speed experiences gusts.;Various studies in the literature have reported that two-level converters have several disadvantages compared with three-level converters. Among the disadvantages are high switching losses, high dv/dt, and high total harmonic distortion (THD). Hence, the models and field oriented control schemes for three-level neutral-point-clamped (NPC) converters are also investigated and applied to a WTGS. Besides, an advanced modulation technology, namely, space vector PWM (SVPWM), is also investigated and compared to traditional sinusoidal PWM in a WTGS.
机译:风能对环境友好,因此在世界上起着越来越重要的作用。在过去的几十年中,由于变速风轮机(WT)的可控性和效率更高,并且具有良好的电能质量,因此其概念受到越来越多的关注。随着变速WT的可控性需求的增加,因此研究能够精确模拟WTGS中每个组件行为的风力涡轮发电机系统(WTGS)的建模非常重要和必要。因此,本论文将提供配备双馈感应发电机(DFIG)的并网风力涡轮机系统的详细模型,其中包括风力涡轮机的空气动力学模型,机械传动系统的模型,DFIG模型和为了从WTGS获得令人满意的输出功率,还必须根据先前获得的WTGS模型来开发控制策略。这些控制方案包括电网侧变流器控制,发电机侧变流器控制,最大功率点跟踪控制和桨距角控制。电网侧转换器控制器用于保持直流母线电压恒定,并产生从电网侧看入WTGS的单位功率因数。发电机侧变流器控制器具有调节转矩,有功功率和无功功率的能力。最大功率点跟踪控制用于为定子端子上的有功功率提供参考值。俯仰角控制方案用于调节俯仰角,即使在阵风时也能将输出功率保持在额定值。文献中的各种研究表明,与三电平变换器相比,两电平变换器具有一些缺点。转换器。缺点包括高开关损耗,高dv / dt和高总谐波失真(THD)。因此,还研究了三电平中性点钳位(NPC)转换器的模型和面向磁场的控制方案,并将其应用于WTGS。此外,还研究了一种先进的调制技术,即空间矢量PWM(SVPWM),并将其与WTGS中的传统正弦波PWM进行了比较。

著录项

  • 作者

    Jing, Xin.;

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Alternative Energy.;Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2012
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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