A tutorial on control-oriented modeling and control of wind farms

S. Boersma, B. Doekemeijer, P. Gebraad, P. Fleming, J. Annoni, A. Scholbrock, J. Frederik, J. Wingerden
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引用次数: 163

Abstract

Wind turbines are often sited together in wind farms as it is economically advantageous. However, the wake inevitably created by every turbine will lead to a time-varying interaction between the individual turbines. Common practice in industry has been to control turbines individually and ignore this interaction while optimizing the power and loads of the individual turbines. However, turbines that are in a wake experience reduced wind speed and increased turbulence, leading to a reduced energy extraction and increased dynamic mechanical loads on the turbine, respectively. Neglecting the dynamic interaction between turbines in control will therefore lead to suboptimal behaviour of the total wind farm. Therefore, wind farm control has been receiving an increasing amount of attention over the past years, with the focus on increasing the total power production and reducing the dynamic loading on the turbines. In this paper, wind farm control-oriented modeling and control concepts are explained. In addition, recent developments and literature are discussed and categorized. This paper can serve as a source of background information and provides many references regarding control-oriented modeling and control of wind farms.
面向控制的风电场建模和控制教程
风力涡轮机通常被安置在一起,因为这在经济上是有利的。然而,每个涡轮机不可避免地产生的尾流将导致单个涡轮机之间的时变相互作用。工业中常见的做法是单独控制涡轮机,而忽略这种相互作用,同时优化单个涡轮机的功率和负载。然而,处于尾流中的涡轮机风速降低,湍流增加,分别导致能量提取减少,涡轮上的动态机械负荷增加。因此,忽略控制中的涡轮机之间的动态相互作用将导致整个风电场的次优行为。因此,风电场控制在过去几年受到越来越多的关注,其重点是增加总发电量和减少涡轮机的动负荷。本文阐述了面向风电场控制的建模和控制概念。此外,最近的发展和文献进行了讨论和分类。本文可作为风电场面向控制建模和控制的背景资料来源,并提供许多参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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