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Mixed H2/H∞ Control Design for Wind Turbine System with Pole Placement Constraints

机译:带极点约束的风力发电机组混合H2 /H∞控制设计

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This paper deals with the problem of mixed H2/H∞ control for an offshore floating wind turbine system. Firstly, we consider the modeling of a wind turbine system with collective pitch control scheme and the interaction with drive train dynamics and tower motions. The scenario is for the above rated wind speed conditions, where the goal is to keep the rotor rotational speed at its rated value while mitigating oscillations in the drive train and tower. Secondly, we present an effective technique to design a dynamic output-feedback mixed H2/H∞ controller with pole placement constraints using a linear matrix inequality (LMI) approach. Pole placement constraints are implemented in order to improve the closed loop system response. Finally, a model obtained from the wind turbine simulation software FAST is used to illustrate the effectiveness of the proposed design technique.
机译:本文研究了海上浮式风力发电机系统的混合H2 /H∞控制问题。首先,我们考虑采用集体变桨控制方案以及与动力传动系统动力学和塔架运动的相互作用对风力涡轮机系统进行建模。该方案适用于上述额定风速条件,目标是将转子转速保持在其额定值,同时减轻传动系统和塔架中的振动。其次,我们提出了一种有效的技术,可使用线性矩阵不等式(LMI)方法设计具有极点放置约束的动态输出-反馈混合H2 /H∞控制器。为了提高闭环系统响应,实施了极点放置约束。最后,从风力涡轮机仿真软件FAST获得的模型用于说明所提出的设计技术的有效性。

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