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Study on the dynamic modeling and natural characteristics of wind turbine drivetrain considering electromagnetic stiffness

机译:考虑电磁刚度的风力涡轮机传动系统动态建模与自然特性研究

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As the wind turbine starts running, the drivetrain would suffer a significant impact load, which severely endangers the safety of the wind turbine. Therefore, ensuring the capacity of the drivetrain to resist the impact load is critical to prevent wind turbine downtime. Most of the drivetrain models fail to balance the efficiency and accuracy, and lack the concern on the responses of the drivetrain at start-up. In this paper, a rigid-flexible coupling dynamic modeling method and an experiment method are proposed to study the modal characteristics of the doubly-fed wind turbine drivetrain at start-up. The drivetrain model is constructed applying the electromagnetic (EM) stiffness and the mesh deformation of the multistage gear transmission as well as the flexibility of bearings, main shaft and parallel stage shafts. The proposed model is validated by the professional software. A new measuring point is discovered to record the experimental data influenced by the electromagnetic stiffness. An efficient method is further developed to calculate the electromagnetic stiffness. The modal shape, modal energy and amplitude-frequency responses of the drivetrain are investigated considering the electromagnetic stiffness. The proposed method can be used to guide the drivetrain optimization and the experiment. (C) 2019 Elsevier Ltd. All rights reserved.
机译:随着风力涡轮机开始运行,动力传动系统将遭受显着的冲击载荷,这严重危及风力涡轮机的安全性。因此,确保动力传动系统抵抗冲击载荷的能力对于防止风力涡轮机停机至关重要。大多数动力传动系统模型都无法平衡效率和准确性,缺乏对初创物流传动系统的回应的关注。本文提出了一种刚性柔性耦合动态建模方法和实验方法,以研究启动时双馈风力涡轮机传动系统的模态特性。驱动器模型是构造的,施加电磁(EM)刚度和多级齿轮变速器的网格变形以及轴承,主轴和平行级轴的柔韧性。所提出的模型由专业软件验证。发现新的测量点以记录受电磁刚度影响的实验数据。进一步开发了一种有效的方法来计算电磁刚度。考虑到电磁刚度,研究了传动系统的模态形状,模态能量和幅度频率响应。所提出的方法可用于引导动力传动系统优化和实验。 (c)2019年elestvier有限公司保留所有权利。

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