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Analysis and design of a tower motion estimator for wind turbines

机译:风力发电机塔架运动估计器的分析与设计

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The use of blade individual pitch control (IPC) provides a means of alleviating the harmful turbine loads that arise from the uneven and unsteady forcing from the oncoming wind. Such IPC algorithms, which mainly target the blade loads at specific frequencies, are designed to avoid excitations of other turbine dynamics such as the tower. Nonetheless, these blade and tower interactions can be exploited to estimate the tower movement from the blade load sensors. As a consequence, the aim of this paper is to analyse the observability properties of the blade and tower model and based on these insights, an estimator design is proposed to reconstruct the tower motion from the measurements of the flap-wise blade loads, that are typically available to the IPC. The proposed estimation strategy offers many immediate benefits, for example, the estimator eliminates the need for a motion sensor on the tower, and the estimated signals can be used for control or fault monitoring purposes. We further show results obtained from high-fidelity turbine simulations to demonstrate the performance of the proposed estimator.
机译:叶片独立变桨控制(IPC)的使用提供了一种减轻因迎面而来的风的不均匀和不稳定推动而产生的有害涡轮机负载的方法。此类IPC算法主要针对特定​​频率下的叶片负载,旨在避免激励其他涡轮机动力学(例如塔架)。尽管如此,可以利用这些叶片和塔架的相互作用来从叶片载荷传感器估算塔架的运动。因此,本文的目的是分析叶片和塔架模型的可观察性,并基于这些见解,提出一种估计器设计,以根据襟翼方向叶片载荷的测量值重建塔架运动,即通常可供IPC使用。所提出的估计策略具有许多直接的好处,例如,估计器无需在塔架上安装运动传感器,并且估计的信号可用于控制或故障监视目的。我们进一步显示了从高保真涡轮机仿真获得的结果,以证明所提出的估计器的性能。

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