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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >A Study on the Loss in a Superconducting Magnet by the Control Current in a Hybrid Electro-Magnetic Suspension System
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A Study on the Loss in a Superconducting Magnet by the Control Current in a Hybrid Electro-Magnetic Suspension System

机译:混合电磁悬浮系统中控制电流对超导磁体损耗的研究

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摘要

A proto-type hybrid electro-magnetic suspension system (hybrid EMS system) was developed by Yonsei university . It is the first step of study on fundamental technology for advanced railroad system development. The proto-type hybrid EMS system consists of a ferromagnetic-core, a superconducting magnet (Bi-2223) for generating magneto-motive force (MMF) and a control coil for levitation control. This system has the characteristic of a control coil generating a magnetic flux to keep the levitation gap in constant value when the gap is attempted to be varied by external physical factors. In doing so, the induced current by the magnetic flux generate loss to the superconducting magnet inducing the possibility of an unstable system. Therefore, we have experimented and documented the results of evaluating the loss in the superconducting magnet generated by the control coil. This paper can be expected to suggest useful data for the design and operation of a hybrid EMS system.
机译:延世大学开发了一种原型混合电磁悬架系统(混合EMS系统)。这是高级铁路系统开发基础技术研究的第一步。原型混合EMS系统由铁磁芯,用于产生磁动势(MMF)的超导磁体(Bi-2223)和用于悬浮控制的控制线圈组成。该系统的特征在于,当试图通过外部物理因素改变磁悬浮间隙时,控制线圈产生磁通以将磁悬浮间隙保持恒定值。这样做,由磁通量引起的感应电流会给超导磁体造成损耗,从而导致系统不稳定的可能性。因此,我们已经试验并记录了评估控制线圈产生的超导磁体损耗的结果。可以期望本文为混合EMS系统的设计和操作提供有用的数据。

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