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Dynamic Properties of Magnetic Levitation System Using High-Temperature Superconductors

机译:高温超导体磁悬浮系统的动力学特性

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摘要

Pinning effect of a bulk high-temperature supercon- ductor (HTS) has various possible applications, e.g., it enables a non-contact and stable levitation without active control. Regarding the magnetic levitation with HTSs, permanent magnets are generally employed, but our previous studies have demonstrated that the permanent magnets can be replaced with soft magnetic materials such as iron. When the magnetic levitation is applied to large transportation system, the use of this technique has a potential to allow a low-cost levitation system with a simple structure, in which expensive permanent magnets can be eliminated. In the mechanical design, a dynamic evaluation as well as a static evaluation must be needed. Hence, this paper fundamentally discusses dynamic properties of the magnetic levitation modulated by a damped harmonic oscillator model. For the dynamic analysis, this paper proposes a novel measurement method using repetitive control. The analysis shows that the dynamic properties of our system are related to the approach manner—process and speed—of the soft magnetic material to the HTS. It is expected that these results may shed further light on the design of efficient levitation system with HTSs.
机译:大型高温超导体(HTS)的钉扎效应具有多种可能的应用,例如,无需主动控制即可实现非接触和稳定的悬浮。关于HTS的磁悬浮,通常使用永磁体,但是我们先前的研究表明,永磁体可以用软磁性材料例如铁代替。当将磁悬浮应用于大型运输系统时,使用该技术有可能允许具有简单结构的低成本悬浮系统,其中可以消除昂贵的永磁体。在机械设计中,必须同时进行动态评估和静态评估。因此,本文从根本上讨论了由阻尼谐波振荡器模型调制的磁悬浮的动力学特性。对于动态分析,本文提出了一种使用重复控制的新颖测量方法。分析表明,我们系统的动态特性与软磁材料到高温超导的接近方式(过程和速度)有关。可以预期,这些结果可能会进一步阐明采用HTS的高效悬浮系统的设计。

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