Optimal control of variable speed wind turbines

A. Pintea, Haoping Wang, N. Christov, P. Borne, D. Popescu, A. Badea
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引用次数: 22

Abstract

This paper proposes a MIMO linear quadratic regulator (LQR) controller designed for a horizontal variable speed wind turbine with focus on the operating range referring to the above rated wind speeds. The operating conditions of wind turbines make them subject to fluctuating loads that create fatigue and lead to damage. Alleviating these loads would reduce the needed materials, and increase the lifespan and the quality of the produced energy. The optimality of the entire system is defined in relation with the trade-off between the wind energy conversion maximization and the minimization of the fatigue in the mechanical structure. The solution of a control using an LQR regulator is presented. The performances of the optimal control are assessed and discussed by means of a set of simulations.
变速风力发电机的最优控制
本文提出了一种针对水平变速风力机的多输入多输出线性二次型调节器(LQR)控制器,其工作范围参考上述额定风速。风力涡轮机的工作条件使它们受到波动载荷的影响,从而产生疲劳并导致损坏。减轻这些负荷将减少所需的材料,并增加使用寿命和生产能源的质量。整个系统的最优性定义为风能转换最大化与机械结构疲劳最小化之间的权衡。提出了一种采用LQR调节器的控制方案。通过一组仿真,对最优控制的性能进行了评价和讨论。
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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