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Influence of Coil Location and Current Angle in Permanent Magnet Wind Power Generators With High-Temperature Superconducting Armature Windings

机译:高温超导电枢绕组永磁风力发电机中线圈定位和电流角度的影响

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摘要

In this article, the operating current and torque of surface-mounted permanent magnet (SPM) wind power generators with high-temperature superconducting (HTS) armature windings are analyzed. The influence of coil location and current angle on the electromagnetic performance is investigated systematically. The results show that the location of the HTS coils significantly affects the operating current and torque. Furthermore, the maximum torque current angle of SPM wind power generators with HTS armature windings can be different from 180 degrees due to the interaction between the armature and magnet fields. A design optimization method for wind power generators with HTS armature windings is developed in this article. The optimal design is then identified with consideration of the coupling influence of coil location and current angle.
机译:在本文中,分析了表面上安装的永磁体(SPM)风力发电机的工作电流和扭矩,具有高温超导(HTS)电枢绕组。系统地研究了线圈位置和电流角度对电磁性能的影响。结果表明,HTS线圈的位置显着影响工作电流和扭矩。此外,由于电枢和磁体之间的相互作用,具有HTS电枢绕组的SPM风力发电机的最大扭矩电流角可以与180度不同。本文开发了具有HTS电枢绕组的风力发电机设计优化方法。然后考虑到线圈位置和电流角度的耦合影响来识别最佳设计。

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