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Power fluctuations smoothing and regulations in wind turbine generator systems.

机译:风力发电机系统中的功率波动平滑和调节。

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摘要

Wind is one of the most popular renewable energy sources and it has the potential to become the biggest energy source in future. Since the wind does not always blow constantly, the output wind power is not constant which may make some problem for the power grid. According to the grid code which is set by independent system operator, ISO, wind turbine generator systems need to follow some standards such as the predetermined acceptable power fluctuations. In order to smooth the output powers, the energy storage system and some power electronics modules are employed. The utilized power electronics modules in the wind turbine system can pursue many different goals, such as maintaining the voltage stability, frequency stability, providing the available and predetermined output active and reactive power. On the other side, the energy storage system can help achieving some of these goals but its main job is to store the extra energy when not needed and release the stored energy when needed. The energy storage system can be designed in different sizes, material and also combination of different energy storage systems (hybrid designs). Combination of power electronics devises and also energy storage system helps the wind turbine systems to smooth the output power according to the provided standards. In addition prediction of wind speed may improve the performance of wind turbine generator systems. In this research study all these three topics are studied and the obtained results are written in 10 papers which 7 of them are published and three of them are under process.
机译:风能是最受欢迎的可再生能源之一,它有潜力在将来成为最大的能源。由于风并不总是恒定地吹,因此输出风功率不是恒定的,这可能对电网造成一些问题。根据由独立系统运营商ISO设置的电网代码,风力涡轮发电机系统需要遵循一些标准,例如预定的可接受功率波动。为了使输出功率平滑,采用了能量存储系统和一些功率电子模块。风力涡轮机系统中使用的功率电子模块可以追求许多不同的目标,例如保持电压稳定性,频率稳定性,提供可用的和预定的输出有功和无功功率。另一方面,能量存储系统可以帮助实现其中一些目标,但是其主要工作是在不需要时存储多余的能量,并在需要时释放存储的能量。储能系统可以设计成不同的尺寸,材料以及不同的储能系统的组合(混合设计)。电力电子设备与储能系统的组合可帮助风力涡轮机系统根据提供的标准来平滑输出功率。另外,风速的预测可以改善风力涡轮发电机系统的性能。在本研究中,对这三个主题都进行了研究,并将获得的结果写在10篇论文中,其中7篇已发表,其中3篇正在进行中。

著录项

  • 作者

    Babazadehrokni, Hamed.;

  • 作者单位

    University of Denver.;

  • 授予单位 University of Denver.;
  • 学科 Engineering Electronics and Electrical.;Energy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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