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Comparison between linear and nonlinear control strategies for variable speed wind turbines

机译:变速风力发电机线性和非线性控制策略的比较

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The purpose of this work is to compare some linear and nonlinear control strategies, with the aim of benefiting as well as possible of wind energy conversion systems. Below rated wind speed, the main control objective is to perform an optimal wind power capture while avoiding strong loads on the drive train shafts. To explicitly take into consideration the low speed shaft flexibility, a two-mass nonlinear model of the wind turbine is used for controllers synthesis. After adapting a LQC controller based on the linearized model, nonlinear controllers based on a wind speed estimator are developed. They take into account the nonlinear dynamic aspect of the wind turbine and the turbulent nature of the wind. The controllers are validated upon an aeroelastic wind turbine simulator for a realistic wind speed profile. The study shows that nonlinear control strategies bring more performance in the exploitation of wind energy conversion systems.
机译:这项工作的目的是比较一些线性和非线性控制策略,以期尽可能使风能转换系统受益。在额定风速以下时,主要控制目标是执行最佳风能捕获,同时避免在传动链轴上承受重载荷。为了明确考虑低速轴的柔韧性,将风力涡轮机的两质量非线性模型用于控制器综合。在基于线性化模型适应LQC控制器之后,开发了基于风速估计器的非线性控制器。他们考虑了风力涡轮机的非线性动态特性和风的湍流特性。控制器在气动弹性风力涡轮机模拟器上经过验证,可实现真实的风速曲线。研究表明,非线性控制策略为风能转换系统的开发带来了更多的性能。

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