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首页> 外文期刊>Journal of Theoretical and Applied Mechanics >IMPLEMENTATION OF THE LQG CONTROLLER FOR A WIND TURBINE TOWER-NACELLE MODEL WITH AN MR TUNED VIBRATION ABSORBER
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IMPLEMENTATION OF THE LQG CONTROLLER FOR A WIND TURBINE TOWER-NACELLE MODEL WITH AN MR TUNED VIBRATION ABSORBER

机译:LQG控制器对带有MR调谐振动吸收器的风轮机塔形纳克尔模型的实现

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摘要

Vibration of a wind turbine tower is related to fatigue wear, influencing reliability of the whole structure. The current paper deals with the problem of Linear-Quadratic-Gaussian (LQG) tower vibration control using specially designed and built simulation and laboratory tower-nacelle models with a horizontally aligned, magnetorheological (MR) damper based tuned vibration absorber located at the nacelle. Force excitation applied horizontally to the tower itself, or to the nacelle, is considered. The MR damper LQG control algorithm, including the Kalman state observer and LQR (Linear-Quadratic-Regulator) controller is analysed numerically and implemented on the laboratory ground, in comparison with the system with a deactivated absorber. Simulation and experimental results are presented.
机译:风力涡轮机塔架的振动与疲劳磨损有关,影响整个结构的可靠性。当前的论文使用专门设计和建造的模拟和实验室塔机舱模型来解决线性二次高斯(LQG)塔机振动控制问题,该模型具有位于机舱的水平对齐,基于磁流变(MR)阻尼器的调谐减震器。考虑水平施加到塔架本身或机舱的力激励。与带有停用吸收器的系统相比,对MR阻尼器LQG控制算法(包括卡尔曼状态观测器和LQR(线性二次调节器)控制器)进行了数值分析,并在实验室地面上实施。给出了仿真和实验结果。

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