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Torque characteristics in a large permanent magnet synchronous generator with stator radial ventilating air ducts

机译:具有定子径向通风风道的大型永磁同步发电机的转矩特性

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In this study, we investigated the torque characteristics of large low-speed direct-drive permanent magnet synchronous generators with stator radial ventilating air ducts for offshore wind power applications. magnet shape optimization was used first to improve the torque characteristics using two-dimensional finite element analysis (FEA) in a permanent magnet synchronous generator with a common stator. The rotor step skewing technique was then employed to suppress the impacts of mechanical tolerances and defects, which further improved the torque quality of the machine. Comprehensive three-dimensional FEA was used to evaluate accurately the overall effects of stator radial ventilating air ducts and rotor step skewing on torque features. The influences of the radial ventilating ducts in the stator on torque characteristics, such as torque pulsation and average torque in the machine with and without rotor step skewing techniques, were comprehensively investigated using three-dimensional FEA. The results showed that stator radial ventilating air ducts could not only reduce the average torque but also increase the torque ripple in the machine. Furthermore, the torque ripple of the machine under certain load conditions may even be increased by rotor step skewing despite a reduction in cogging torque.
机译:在这项研究中,我们研究了用于海上风力发电应用的带有定子径向通风风道的大型低速直驱永磁同步发电机的转矩特性。首先,在具有公共定子的永磁同步发电机中,通过二维有限元分析(FEA)使用磁体形状优化来改善转矩特性。然后采用了转子步进偏斜技术来抑制机械公差和缺陷的影响,从而进一步改善了机器的扭矩质量。综合的三维有限元分析用于准确评估定子径向通风风道和转子阶跃偏斜对转矩特性的总体影响。使用三维有限元分析,全面研究了定子中的径向通风管道对转矩特性的影响,例如在采用和不采用转子阶梯倾斜技术的情况下,电机中的转矩脉动和平均转矩。结果表明,定子径向通风管道不仅可以降低平均转矩,而且可以增加电机的转矩脉动。此外,尽管齿槽转矩减小,但在某些负载条件下,电机的转矩脉动甚至可能因转子阶跃偏斜而增大。

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