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Mechanism analysis and suppression strategy research on permanent magnet synchronous generator wind turbine torsional vibration

机译:永磁同步发电机风力涡轮机扭转振动的机制分析与抑制策略研究

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Torsional vibration of flexible drive chain is a historical issue. With the maximization development and the rotating machinery high-speed operation, the drive chain systems of large-scaled units become more and more complex, which makes the torsional vibration problems becoming increasingly prominent in recent years. This article deeply analyzed the small signal stability of large-scaled WECS based on CMT, elaborated the torsional vibration mechanism and reasons for the first time and pointed out torsional vibration is caused by the disturbance wind and the DPC strategy. The disturbance wind is an external stimulus and can produce a low-frequency torsional vibration at the same frequency as wind speed. The DPC could weaken the drive chain damping. If the total damping of drive chain is negative, the unstable torsion vibration will occur. And if the drive chain is still a under-damped dynamic, the high-frequency torsional vibration at natural frequency will be generated. Therefore, large-scaled WECS must have damping control. This study found that appropriate enhancing drive chain stiffness could reduce low-frequency torsional vibration caused by wind speed. Therefore, a damping and stiffness compensation control method was proposed to suppress the torsional vibration. Compared with the conventional damping control, the new method not only can suppress the high-frequency torsional vibration but also has a good restraining effect on the low-frequency torsional vibration. Furthermore, the detailed design procedures including the calculation of injection damping and stiffness were given in this paper. Finally, the correctness and effectiveness of our analysis were further verified by the simulation experiments (C) 2019 ISA. Published by Elsevier Ltd. All rights reserved.
机译:柔性驱动链的扭转振动是一个历史问题。随着最大化的开发和旋转机械高速运行,大规模单位的驱动链系统变得越来越复杂,这使得近年来扭转振动问题变得越来越突出。本文深入分析了基于CMT的大规模WECS的小信号稳定性,阐述了第一次扭转振动机制和原因,并指出扭转振动是由扰动风和DPC策略引起的。扰动风是外部刺激,可以在与风速相同的频率下产生低频扭转振动。 DPC可以削弱驱动链阻尼。如果驱动链的总阻尼是负的,则会发生不稳定的扭转振动。并且如果驱动链仍然是抑制动态,则将产生自然频率的高频扭转振动。因此,大规模的WECs必须具有阻尼控制。本研究发现,适当的增强驱动链刚度可降低风速引起的低频扭转振动。因此,提出了一种阻尼和刚度补偿控制方法来抑制扭转振动。与传统的阻尼控制相比,新方法不仅可以抑制高频扭转振动,而且还具有对低频扭转振动的良好抑制效果。此外,本文给出了包括注射阻尼和刚度计算的详细设计程序。最后,通过模拟实验(C)2019 ISA进一步验证了我们分析的正确性和有效性。 elsevier有限公司出版。保留所有权利。

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