首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Performance of Multi-Layer and Stator-Shifting Fractional-Slot Concentrated Windings for Superconducting Wind Turbine Generators Under Normal and Short-Circuit Operation Conditions
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Performance of Multi-Layer and Stator-Shifting Fractional-Slot Concentrated Windings for Superconducting Wind Turbine Generators Under Normal and Short-Circuit Operation Conditions

机译:用于正常和短路操作条件下超导风力涡轮发电机的多层和定子移位分数槽集中绕组的性能

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摘要

High temperature superconducting (HTS) generators are being considered for large offshore direct-drive (DD) wind turbines as they are expected to be lightweight and compact. However, short circuit torques of an HTS generator with integral-slot distributed windings (ISDWs) are too high for wind turbine constructions, mainly due to the large magnetic air gap. Fractional-slot concentrated windings (FSCWs) can be considered to address this issue since their high leakage inductance can limit short circuit currents and torques. Unlike ISDWs, FSCWs produce great contents of space harmonics that induce excessive losses in rotor components. Multi-layer and stator-shifting windings have been proposed to effectively reduce such losses. Based on a conventional 12-slot 10-pole configuration, this paper evaluates the effects of multi-layer and stator-shifting FSCWs on torque production and loss reduction in a 10 MW DD HTS generator. The examined losses include eddy current losses in the rotor shields and AC losses in the HTS field winding. This paper also checks if these FSCW schemes maintain the advantage of achieving a low short circuit torque. The results show that a 6-phase stator-shifting winding is the best choice for applying FSCWs to HTS generators.
机译:对于大型海上直接驱动(DD)风力涡轮机,正在考虑高温超导(HTS)发电机,因为它们预计将重量轻且紧凑。然而,具有整体槽分布式绕组(ISDW)的HTS发生器的短路扭矩对于风力涡轮机结构太高,主要是由于大的磁空气间隙。由于其高泄漏电感可以限制短路电流和扭矩,因此可以考虑分数槽集中绕组(FSCW)来解决这个问题。与ISDW不同,FSCWS产生巨大的空间谐波内容,在转子部件中诱导过度损失。已经提出了多层和定子绕组绕组以有效地降低这种损失。基于传统的12槽10极配置,本文评估了多层和定子移位FSCW对10MW DD HTS发生器中的扭矩产生和损失减少的影响。所检查的损耗包括转子屏蔽中的涡流损耗和HTS场绕组中的AC损耗。本文还检查了这些FSCW方案是否保持了实现低短路扭矩的优势。结果表明,6相定子移位绕组是将FSCWS施加到HTS发生器的最佳选择。

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