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Optimization of levitation and guidance forces in a superconducting Maglev system

机译:超导磁悬浮系统中悬浮力和引导力的优化

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Optimization of the levitation for superconducting Maglev systems requires effective use of vertical and guidance forces during the operation. In this respect the levitation and guidance forces in terms of various permanent magnet array configurations are analyzed. The arrangements of permanent magnet arrays interacting with the superconductor are configured for the purpose of increasing the magnetic flux density. According to configurations, modeling the interaction forces between the permanent magnet and the superconductor are established in terms of the frozen image model. The model is complemented with the analytical calculations and provides a reasonable agreement with the experiments. The agreement of the analytical calculation associated with the frozen image model indicates a strong case to establish an optimization, in which provides preliminary analysis before constructing more complex Maglev system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:优化超导磁悬浮系统的悬浮力需要在操作过程中有效利用垂直力和引导力。在这方面,分析了根据各种永磁体阵列构造的悬浮力和引导力。与超导体相互作用的永磁体阵列的布置被配置用于增加磁通密度的目的。根据构造,根据冻结图像模型建立永磁体和超导体之间的相互作用力的建模。该模型辅以分析计算,并与实验提供合理的一致性。与冻结图像模型相关的分析计算的一致性表明,有必要进行优化,以在构建更复杂的磁悬浮系统之前进行初步分析。 (C)2016 Elsevier Ltd.保留所有权利。

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