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Power control for wind turbines in weak grids: Concepts development

机译:弱电网中风力发电机的功率控制:概念开发

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摘要

Presently, high wind potentials in remote areas may not be utilized for electricity production due to limited grid transmission capacity and/or difficulties in matching the electricity production with the demand. The overall project objective is to helpovercome these bottlenecks, i.e. to identify and analyze methods and technologies for making it viable to utilize more of the wind potential in remote areas. The suggestion is to develop a power control concept for wind turbines which will even out thepower fluctuations and make it possible to increase the wind energy penetration. The main options are to combine wind power with a pumped hydro power storage or with an AC/DC converter and battery storage. The AC/DC converter can either be an "add-on" typeor it can be designed as an integrated part of a variable speed wind turbine. The idea is that combining wind power with the power control concept will make wind power more firm and possible to connect to weaker grids. So, when the concept is matured, theexpectation is that for certain wind power installations, the cost of the power control is paid back as added wind power capacity value and saved grid reinforcement costs. Different systems for controlling the power output from a wind farm connected to aweak grid have been investigated. The investigation includes development of different control strategies, use of different storage types, development of a framework for comparing different options and tools needed as part of the framework. The mainissues in the assessment of the power control concept are the storage capacity and power rating compared to the installed wind power capacity. The model SimStore has been developed to assess that. The economic investigations have shown that for smallsystems where only small amounts of wind energy would otherwise have been dumped add-on PQ-controllers with battery storage can be the least cost option compared to grid reinforcement and dumping of energy. For larger systems pumped storage is attractiveand worth considering, but for large systems the least cost option is grid reinforcement. Power control technology in combination with wind farms can also contribute to the development of remote regions because such technology will improve theinfrastructure of the region and therefore increasing the conditions for local trade and industry
机译:当前,由于有限的电网传输容量和/或难以使电力生产与需求相匹配,偏远地区的高风势可能不能用于电力生产。项目的总体目标是帮助克服这些瓶颈,即确定并分析使偏远地区更多的风能能够利用的方法和技术。建议是开发一种用于风力涡轮机的功率控制概念,该概念将消除功率波动,并有可能增加风能的渗透。主要选项是将风能与抽水蓄能或AC / DC转换器和电池组结合起来。 AC / DC转换器可以是“附加”类型,也可以设计成变速风力涡轮机的集成部分。想法是将风能与功率控制概念相结合将使风能更加牢固,并有可能连接到较弱的电网。因此,当概念成熟时,可以预期的是,对于某些风力发电装置,功率控制成本将作为增加的风力发电容量值并节省电网加固成本而收回。已经研究了用于控制从连接到弱电网的风电场输出的功率的不同系统。调查包括开发不同的控制策略,使用不同的存储类型,开发用于比较框架中所需的不同选项和工具的框架。评估功率控制概念的主要问题是与已安装的风力发电能力相比的存储容量和额定功率。已开发模型SimStore进行评估。经济研究表明,对于小型系统而言,否则将仅倾倒少量风能。与电网加固和能量倾倒相比,带有电池存储的附加PQ控制器是成本最低的选择。对于大型系统,抽水蓄能是有吸引力的并且值得考虑,但是对于大型系统,成本最低的选择是网格加固。结合风力发电场的电力控制技术也可以为偏远地区的发展做出贡献,因为这种技术将改善该地区的基础设施,从而增加当地贸易和工业的条件。

著录项

  • 作者

    Bindner H.;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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