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A Study on the Shape of Iron-Core for a Hybrid Electro-Magnetic Suspension System

机译:混合电磁悬架系统铁心形状的研究

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This paper deals with the shape design of the iron-core of a hybrid EMS (electro-magnetic suspension) system. A proto-type hybrid EMS system was developed by Yonsei University in 2010 , . It is the first step of study on fundamental technology for advanced railroad systems development. The hybrid EMS system requires cooling systems because it uses superconducting magnets , . These cooling systems can influence costs to making and operating the hybrid EMS system. Therefore, a study to reduce the number of cooling systems needs to be carried out in order to economically commercialize the hybrid EMS system. In this paper, a method that reduces the number of cooling systems of the hybrid EMS system was proposed. To achieve this, a small-scale iron-core and coils assembly was fabricated. Using this system, characteristics of levitation force according to the structure of the iron-core was evaluated. Also, numerical analysis using the FEM tool in order to evaluate the levitation force and net force of a full-scale model was performed. This paper can be expected to suggest useful data for the design of a hybrid EMS system.
机译:本文研究了混合EMS(电磁悬挂)系统的铁芯形状设计。延世大学于2010年开发了一种原型混合EMS系统。这是高级铁路系统开发基础技术研究的第一步。混合EMS系统需要冷却系统,因为它使用超导磁体。这些冷却系统会影响制造和运行混合EMS系统的成本。因此,需要进行减少冷却系统数量的研究,以便经济地将混合EMS系统商业化。本文提出了一种减少混合EMS系统冷却系统数量的方法。为了实现这一点,制造了小规模的铁芯和线圈组件。使用该系统,评估了根据铁芯结构的悬浮力特性。另外,使用FEM工具进行了数值分析,以评估全尺寸模型的悬浮力和净力。可以期望本文为混合EMS系统的设计提供有用的数据。

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