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Dynamic modeling and characterization of a wind turbine system leading to controls development.

机译:导致控制开发的风力涡轮机系统的动态建模和表征。

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摘要

With the growing energy demand and need to decrease greenhouse gas emissions there has been a rise in the popularity of renewable energy systems. One of the most popular renewable energy systems over the past decade has been the wind turbine. Technological advances in modeling, prediction, sensing and control combined with the current shift towards decentralized power have prompted development of wind energy systems. Decentralized distribution allows for lower transmission losses because of the closer proximity to the consumer and greater regional control. The wind turbine has positioned itself as the leading energy system to serve as a cornerstone in the development of decentralized energy distribution.;This research focuses on the development of a nonlinear dynamic model of a variable speed wind turbine. The modeling effort is followed by model validation against published data. Subsequently, benchmark control problems and existing control strategies are reviewed from literature. Emphasis is placed on variable speed form of operation. Control strategies are studied for two different operating modes of a wind turbine, namely operations below and above the rated-speed. For the former case control design is based on power maximization and for the latter the control design is based on power regulation. For each case, standard control strategies appearing in literature for individual operating regimes are implemented, and thereafter focus is placed on robust performance. Subsequently attempts are made to design new and/or improved strategies. The new control strategies proposed in this research are based on principles from nonlinear control. Furthermore, the research attempts to apply certain relatively new techniques such as extremum-seeking-control to the wind-turbine application. Finally, the research proposes a switching method to combine the control strategies for individual operating regimes.
机译:随着能源需求的增长以及减少温室气体排放的需求,可再生能源系统的普及程度不断提高。过去十年来,最流行的可再生能源系统之一就是风力涡轮机。建模,预测,传感和控制方面的技术进步,以及当前向分散电源的转变,促使了风能系统的发展。由于与消费者的距离更近且区域控制更大,因此分散式分配可降低传输损耗。风力发电机组已将自己定位为领先的能源系统,在分散式能量分布的发展中起到了基石的作用。;本研究致力于变速风力发电机组的非线性动力学模型的开发。建模工作之后是针对已发布数据进行模型验证。随后,从文献中回顾了基准控制问题和现有控制策略。重点放在变速操作形式上。研究了风力涡轮机两种不同运行模式的控制策略,即低于和高于额定转速的运行方式。对于前者,控制设计基于功率最大化,而对于后者,控制设计基于功率调节。对于每种情况,都实施了文献中针对各个操作方案的标准控制策略,此后将重点放在稳健的性能上。随后尝试设计新的和/或改进的策略。本研究中提出的新控制策略基于非线性控制原理。此外,研究尝试将某些相对较新的技术(例如极值搜索控制)应用于风力涡轮机。最后,该研究提出了一种切换方法,以结合针对各个操作方式的控制策略。

著录项

  • 作者

    Semrau, Greg.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Engineering Mechanical.;Engineering System Science.
  • 学位 M.S.
  • 年度 2010
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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