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Design and Comparison of Radial Flux Magnetic Levitation Systems Based on Conventional and Buried Permanent Magnet Types Rotors

机译:基于传统和埋藏式永磁转子的径向磁悬浮系统的设计与比较

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This paper presents design, analysis and comparison of a radial flux 8-slot magnetic levitation system for two different rotor structures. The magnet-less rotor or conventional and buried-magnet rotor topologies are investigated in detail. 1 Dimensional (1D) magnetic equivalent circuit (MEC) analyses are performed to demonstrate the fundamentals of levitation for two rotor types. 2D finite element analyses (FEA) are also carried out to compare the two structures and to illustrate the benefits of permanent magnet (PM) rotor. Magnetic levitation prototypes with two different rotor structures are built and tested. Results obtained from MEC, FEA and experimental system illustrate that there exists good agreement. It is concluded that buried-magnet rotor type magnetic levitation system has more benefits as opposed to conventional rotor type levitation system design in terms of current and losses.
机译:本文介绍了两种不同转子结构的径向磁通8槽磁悬浮系统的设计,分析和比较。详细研究了无磁体转子或常规磁体和埋磁体转子的拓扑结构。进行了1维(1D)磁等效电路(MEC)分析,以证明两种转子类型的悬浮基本原理。还进行了2D有限元分析(FEA),以比较这两种结构并说明永磁体(PM)转子的优点。建立并测试了具有两种不同转子结构的磁悬浮原型。从MEC,FEA和实验系统获得的结果表明存在良好的一致性。结论是,就电流和损耗而言,与常规转子型悬浮系统设计相比,埋磁体转子型磁悬浮系统具有更多的优势。

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