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Performance Analysis of an HTS Magnetic Suspension and Propulsion System With a Double-Sided HTS Linear Synchronous Motor

机译:双面HTS直线同步电动机的HTS磁悬浮和推进系统的性能分析

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摘要

A novel HTS magnetic suspension and propulsion system driven by a double-sided HTS linear synchronous motor (HTSLSM) has been developed, which is suspended by an HTS magnetic suspension subsystem located on the bottom of the HTSLSM secondary mover. The structural design of the suspension and propulsion system is introduced, and then the magnetization characteristics of the HTS bulk magnets for the HTSLSM are studied and compared by different magnetization methods. The finite-element analysis (FEA) model of the HTSLSM is built up by using an equivalent model of the HTS bulk magnet, and the thrust characteristics of the HTSLSM are also simulated based on the FEA model, and verified by measurements on the prototype. Furthermore, the suspension performance of the HTS magnetic suspension subsystem has also been analyzed by a numerical method based on an equivalent current sheet model of the permanent-magnet guideway. The results show that the HTS magnetic suspension and propulsion system has applicable thrust and suspension performance, and can be applied to the practical applications such as a maglev.
机译:已经开发了一种由双面HTS线性同步电动机(HTSLSM)驱动的新颖的HTS磁悬浮和推进系统,该系统由位于HTSLSM次级推进器底部的HTS磁悬浮子系统悬浮。介绍了悬架和推进系统的结构设计,然后研究了HTSLSM用HTS大块磁体的磁化特性,并用不同的磁化方法进行了比较。通过使用HTS大块磁体的等效模型建立HTSLSM的有限元分析(FEA)模型,并基于FEA模型模拟HTSLSM的推力特性,并通过对原型的测量进行验证。此外,HTS磁悬浮子系统的悬浮性能也已经通过基于永磁导轨等效电流表模型的数值方法进行了分析。结果表明,高温超导磁悬浮和推进系统具有适用的推力和悬浮性能,可应用于磁浮等实际应用。

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