Multi-objective optimization of an actively shielded superconducting field winding: Pole count study
Multi-objective optimization of an actively shielded superconducting field winding: Pole count study
复制标题
主动屏蔽超导励磁绕组的多目标优化:极数研究
DOI:
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发表时间:
2015
期刊:
影响因子:
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通讯作者:
K. Haran
中科院分区:
文献类型:
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作者:
David Loder;K. Haran
An important challenge in the design of air-core superconducting machines is the containment of the magnetic fields within the electric machine. Current solutions result in large reductions of the high power density achievable through the use of superconducting windings. To address this challenge, an actively shielded electromagnet design, an approach commonly used in Magnetic Resonance Imaging (MRI) magnet designs, is considered. This topology utilizes a set of main coils to produce the armature flux density, while including another set of oppositely excited compensating coils to mitigate the fields radiating outside the machine. This approach eliminates or reduces the use of steel in a passive magnetic shield, allowing for very high power density machines. Furthermore, a multi-objective optimization scheme is introduced to minimize two competing objectives, superconducting coil usage and machine volume. Results show a 74% decrease in volume with a 104% increase in superconductor usage.