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Decentralized control of vibrations in wind turbines using multiple active tuned mass dampers with stroke constraint

机译:使用中风约束的多功能调谐质量阻尼器分散控制风力涡轮机中的振动

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摘要

This article is devoted to the study of the vibration control for blades and tower in a wind turbine. Based on the Euler–Lagrangian method, a multi-body dynamic model including three blades with distributed parameter, tower, and their coupling is obtained. Multi active tuned mass dampers have been utilizing as damping devices. Therefore, the dynamics of the tuned mass dampers are also considered in modeling. The influence of extreme wind, and grid dynamics on the vibration of the blade was analyzed. Moreover, the nonlinearity induced by space constraints, which impact on vibration control, is introduced. For active control, the constrained decentralized control strategy is designed via linear matrix inequality which tuned mass dampers stroke constraints are modeled as hard constraints. A doubly fed induction generator connected to an infinite bus including the detailed electrical and structural model was performed on MATLAB/Simulink. Simulation results show that the control strategy can effectively reduce the vibration of the blade while the damper stroke satisfies the working space permitted by the blade. Investigations demonstrate promising results for decentralized constrained control in simultaneous control blade vibrations and tower vibrations. Each actuator is driven separately from the output of the corresponding sensor so that only local feedback control is achieved; this improves the system reliability.
机译:本文致力于研究风力涡轮机叶片和塔的振动控制。基于Euler-Lagrangian方法,获得了一种多体动态模型,包括具有分布式参数,塔架的三个叶片及其耦合。多主动调谐质量阻尼器一直在用作阻尼装置。因此,在建模中也考虑了调谐质量阻尼器的动态。分析了极端风和电网动力学对叶片振动的影响。此外,引入了由空间限制引起的非线性,其影响振动控制。对于主动控制,受限的分散控制策略通过线性矩阵不等式设计,调谐质量阻尼器行程约束被建模为硬约束。在MATLAB / SIMULINK上执行连接到包括详细电气和结构模型的无限总线的双馈电流发电机。仿真结果表明,控制策略可以有效地降低刀片的振动,而阻尼行程满足刀片允许的工作空间。调查表明,在同时控制叶片振动和塔振动中分散受限控制的有希望的结果。每个致动器与相应传感器的输出分开驱动,从而仅实现局部反馈控制;这提高了系统可靠性。

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    Cong Cong;

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  • 年度 2018
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