Optimal state feedback controller for a variable speed wind turbine

Flores Marquez Pablo Enrique
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Abstract

Summary is only given; Modern Wind Turbines are exposed to structural loads due to its large size, flexibility and uncertain environments in which they operate. This creates fatigue and damages the components of the structure, including the transmission. Load reduction might prolong lifetime of the structure and the components furthermore reducing the costs of maintenance. In this paper, a Type-1 Servo System with optimal feedback and disturbances reduction is applied to a 1.5 MW simulated wind turbine, in order to dampen aerodynamic loads on the transmission while the generator speed is regulated in the wind speed region above its rated speed. The performance of the control system is presented and evaluated through a set of simulations in MATLAB / Simulink environments with FAST interface.
变速风力发电机的最优状态反馈控制器
摘要只是给出;现代风力涡轮机由于其庞大的尺寸,灵活性和不确定的运行环境而暴露于结构载荷下。这会造成疲劳并损坏结构部件,包括变速器。减少载荷可以延长结构和部件的使用寿命,进一步降低维护成本。本文将一种具有最优反馈和扰动抑制的1型伺服系统应用于1.5 MW模拟风力发电机组,以减轻变速器上的气动载荷,同时将发电机转速调节在额定风速以上的风速区域。通过一组具有FAST接口的MATLAB / Simulink环境下的仿真,对控制系统的性能进行了介绍和评价。
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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