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HTS Motor Performance Evaluation by Different Pulsed Field Magnetization Strategies

机译:通过不同的脉冲磁场磁化策略评估高温超导电机性能

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摘要

A fully high temperature superconducting motor has been built in the EPEC laboratory at the University of Cambridge, U.K. Two different pulsed field magnetization (PFM) strategies have been implemented for studying the magnetization of a cylindrical rotor designed by an asymmetric array of superconducting bulks. Asymmetric or uneven distribution of superconducting bulks could occur when the size of the superconducting bulks is compromised due to the curvature of the rotor and the design aims to cover the largest area as possible for the magnetic poles. It is certainly an unusual design which nevertheless deserves to be explored, as possible misalignments between the superconducting poles to be magnetized by PFM can be studied when an uneven arrangement of columns of superconducting bulks is implemented for along a cylindrical shaft. In the first of the PFM strategies, only six out of 15 columns of superconducting bulks have been effectively magnetized, and the performance of the resulting rotor has been compared with the case when the PFM strategy leads to the magnetization of up to 93% of the superconducting bulks. The advantages and disadvantages of each of the PFM strategies are discussed.
机译:英国剑桥大学的EPEC实验室已经建造了一种完全高温的超导电动机。已经实施了两种不同的脉冲场磁化(PFM)策略来研究由超导块的不对称阵列设计的圆柱形转子的磁化。当超导块的尺寸由于转子的曲率而受到损害时,可能会出现超导块的不对称或不均匀分布,并且该设计旨在覆盖磁极的最大面积。当然,这是一个不寻常的设计,仍然值得探索,因为当沿着圆柱轴对超导块的列进行不均匀排列时,可以研究要被PFM磁化的超导极之间的不对准。在第一种PFM策略中,在15列超导块中仅有效地磁化了六列,并将最终转子的性能与PFM策略导致高达93%的磁化的情况进行了比较。超导块。讨论了每种PFM策略的优缺点。

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