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Review of control strategy of large horizontal-axis wind turbines yaw system

机译:大型横轴风力涡轮机偏航系统控制策略综述

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摘要

In order to meet the increasing demand of wind energy utilization, wind turbines (WTs) are developing toward the trend of large size and large capacity. In such a trend, various advanced yaw control strategies have been proposed to improve large WTs' comprehensive performance, but the analysis and summary of these strategies are still lacking. Therefore, it is necessary to have a review of yaw control, which not only enables readers to understand the current status of yaw control research but also promotes the development of wind energy technology. This paper presents a review of the current situation of yaw control for WTs, focusing on the mechanical/aerodynamic parts. The mechanical part is concerned with the WT yaw system and its effect on the fatigue load of the WT, and the aerodynamic part involves the wind energy capture and wake redirection to reduce the impact on adjacent WTs. In this review, the existing yaw control methods are classified in term of three control objectives: (1) increasing the wind energy capture of a single WT, (2) reducing the fatigue load of a single WT, and (3) maximizing the total power production of the whole wind farm and optimizing the wind farm fatigue load. On this basis, the control mechanism, the control algorithm, and the results are presented and analyzed in detail. Meanwhile, the advantages and disadvantages of the existing achievements are discussed. In addition, in a conclusion of the review, the future research direction has been identified.
机译:为了满足风能利用的日益增长的需求,风力涡轮机(WTS)正在朝着大尺寸和大容量的趋势发展。在这种趋势中,已经提出了各种先进的偏航控制策略来提高大型WTS的综合性能,但这些策略的分析和概要仍然缺乏。因此,有必要对偏航控制进行审查,这不仅使读者能够了解偏航控制研究的当前状态,而且促进了风能技术的发展。本文介绍了对WTS的偏航控制现状的审查,重点是机械/空气动力学零件。机械部件涉及WT偏航系统及其对WT的疲劳负荷的影响,气动部件涉及风能捕获和唤醒重定向以减少对相邻WT的影响。在本文中,现有的偏航控制方法在三个控制目标中分类:(1)增加单个WT的风能捕获,(2)降低单个WT的疲劳负荷,(3)最大化总计整个风电场的电力生产,优化风电场疲劳负荷。在此基础上,详细介绍和分析控制机制,控制算法和结果。同时,讨论了现有成就的优缺点。此外,在审查的结论中,未来的研究方向已经确定。

著录项

  • 来源
    《Wind Energy》 |2021年第2期|97-115|共19页
  • 作者单位

    Cent South Univ Sch Automat Changsha Peoples R China|Hunan Prov Key Lab Power Elect Equipment & Grid Changsha Peoples R China;

    Cent South Univ Sch Automat Changsha Peoples R China|Hunan Prov Key Lab Power Elect Equipment & Grid Changsha Peoples R China;

    Cent South Univ Sch Automat Changsha Peoples R China|Hunan Prov Key Lab Power Elect Equipment & Grid Changsha Peoples R China;

    Cent South Univ Sch Automat Changsha Peoples R China|Hunan Prov Key Lab Power Elect Equipment & Grid Changsha Peoples R China;

    XEMC Windpower Co Ltd Xiangtan Peoples R China|State Key Lab Offshore Wind Power Technol & Testi Xiangtan Peoples R China;

    XEMC Windpower Co Ltd Xiangtan Peoples R China|State Key Lab Offshore Wind Power Technol & Testi Xiangtan Peoples R China;

    Kunsan Natl Univ Sch IT Informat & Control Engn Kunsan South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fatigue load reduction; wind energy capture; wind farm optimization; yaw control;

    机译:疲劳负荷减少;风能捕获;风电场优化;偏航控制;

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