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Design optimization of ironless multi-stage axial-flux permanent magnet generators for offshore wind turbines

机译:近海风力涡轮机无铁多级轴向磁通永磁发电机的设计优化

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Direct-driven ironless-stator machines have been reported to have low requirements on the strength of the supporting structures. This feature is attractive for offshore wind turbines, where lightweight generators are preferred. However, to produce sufficient torque, ironless generators are normally designed with large diameters, which can be a challenge to the machine's structural reliability. The ironless multi-stage axial-flux permanent magnet generator (MS-AFPMG) has the advantages of ironless machines but a relatively small diameter. The objective of this article is to present the design optimization and performance investigation of the ironless MS-AFPMG. An existing design strategy, which employs two-and three-dimensional static finite element analyses and genetic algorithm for machine optimization, is improved with the aim of reducing the calculation load and calculation time. This improved design strategy is used to investigate the optimal ironless MS-AFPMG. Some intrinsic features of this kind of machine are revealed.
机译:据报道,直接驱动的无铁定子机对支撑结构的强度有低要求。该功能对于海上风力涡轮机具有吸引力,优选轻质发电机。然而,为了产生足够的扭矩,无氧发生器通常设计具有大直径,这可能是机器结构可靠性的挑战。无铁多级轴向 - 磁通永磁发电机(MS-AFPMG)具有无氧机器的优点,但直径相对较小。本文的目的是提供无铁MS-AFPMG的设计优化和性能调查。采用二维静态有限元分析和用于机器优化的遗传算法的现有设计策略随着减少计算负载和计算时间的提高。这种改进的设计策略用于研究最佳的无铁MS-AFPMG。揭示了这种机器的一些内在特征。

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