Wind turbine loads reduction using feedforward feedback collective pitch control based on the estimated effective wind speed

F. Meng, J. Wenske, A. Gambier
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引用次数: 13

Abstract

Wind being the primary energy resource has a huge influence on the dynamic behavior of wind turbines. Therefore, the control algorithms can be further improved if the wind speed is known by the controller. Unfortunately, either no accurate direct online measurement of the effective wind speed is available or the measurement system is too expensive, which means that it should be estimated in order to make such improvement applicable on the control algorithm in practice. In this paper a new feedforward feedback collective pitch control algorithm based on the estimated effective wind speed and wind speed extrapolation is presented for improving the traditional collective pitch controller. The simulation results show that with the presented controller both fatigue loads and extreme loads can be reduced for the turbulent wind field and extreme operating gust respectively.
基于估计有效风速的前馈反馈集体螺距控制风力机负荷降低
风作为一种主要的能源,对风力发电机组的动力性能有很大的影响。因此,如果控制器知道风速,则可以进一步改进控制算法。不幸的是,要么没有准确的在线直接测量有效风速,要么测量系统过于昂贵,这意味着需要对有效风速进行估计,才能使这种改进在实际控制算法中适用。针对传统的集体螺距控制器,提出了一种基于估计有效风速和风速外推的前馈反馈集体螺距控制算法。仿真结果表明,该控制器能有效地降低湍流风场的疲劳载荷和极端工作阵风的极限载荷。
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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