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Investigation Into Multi-Phase Armature Windings for High-Temperature Superconducting Wind Turbine Generators

机译:高温超导风力涡轮发电机多相电枢绕组的研究

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High-temperature superconducting (HTS) generators are being considered as a competitive candidate in large direct-drive (DD) wind turbines because of their features of being lightweight and compact. Normally a large air gap is inevitable in partially HTS generators, sacrificing the torque producing capability. In this paper, multi-phase armature windings for HTS generators are investigated to reduce the air gap length in HTS generators while not compromising generators; performance. Therefore, the torque density of HTS generators can be improved without any added costs. Five different multi-phase armature winding schemes are studied in the paper. Their performance regarding torque production and rotor losses in a 10 MW DD HTS generator are examined. The findings show that employing multi-phase armature windings can reduce the mechanical air gap without generating extra eddy current losses in the rotor, and the torque production can be improved by up to 9.1. In addition, the alternating magnetic field reaching the HTS field winding are also reduced by using multi-phase armature windings, resulting in lower AC losses and cooling costs.
机译:高温超导(HTS)发电机被认为是大型直接驱动(DD)风力涡轮机的竞争候选者,因为它们的特点是轻巧和紧凑。通常,部分HTS发生器中的大气隙是不可避免的,牺牲扭矩产生能力。在本文中,研究了HTS发生器的多相电枢绕组,以减小HTS发生器中的气隙长度,而不会损害发生器;表现。因此,可以在没有任何增加的成本的情况下提高HTS发生器的扭矩密度。本文研究了五种不同的多相电枢绕组方案。检查了关于10 MW DD HTS发生器中的扭矩生产和转子损耗的性能。结果表明,采用多相电枢绕组可以减小机械气隙而不产生转子中的额外涡流损耗,并且可以通过高达9.1提高扭矩产生。另外,通过使用多相电枢绕组,还减少了达到HTS场绕组的交替磁场,从而降低了较低的AC损耗和冷却成本。

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