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首页> 外文期刊>Electric Power Applications, IET >Magnetic circuit designing and structural optimisation for a three degree-of-freedom hybrid magnetic bearing
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Magnetic circuit designing and structural optimisation for a three degree-of-freedom hybrid magnetic bearing

机译:三自由度混合磁轴承的磁路设计与结构优化

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摘要

The three degree-of-freedom (3-DOF) hybrid magnetic bearing (HMB) sets radial, axial at one entirety, which can effectively save the bearing installation space. Here, a 3-DOF HMB is designed, optimised, and tested for a 30 kW 60,000 r/min high-speed motor system. The radial and axial bearing capacity is analysed by equivalent magnetic circuit method and three dimensional finite element model (FEM) of initial model of 3-DOF HMB is established. Then, the radial bearing capacity, axial bearing capacity, current-stiffness, and displacement-stiffness are selected as the optimised design target by using chaos particle swarm optimisation algorithm. Meanwhile, the axial length, eddy-current loss, and air-gap flux density are selected as constraints of optimization. The optimal results showed that the axial length is decreased, the eddy-current loss is reduced, and the harmonics in the air gap is lower while the bearing capacity is improved. Furthermore, a 30 kW 60,000 r/min high-speed motor with proposed 3-DOF HMB is manufactured, and the experiments of the radial/axial static bearing capacity test, dynamic performance of high-speed motor with no load in 60,000 r/min and with load in 55,000 r/min are carried out. Experiment results show that the optimised 3-DOF HMB has good force performance and dynamic performance.
机译:三自由度(3-DOF)混合电磁轴承(HMB)整体设置径向,轴向,可有效节省轴承的安装空间。在这里,针对30 kW 60,000 r / min高速电机系统设计,优化和测试了3自由度HMB。采用等效磁路法分析了径向和轴向承载力,建立了3-DOF HMB初始模型的三维有限元模型。然后,采用混沌粒子群算法将径向承载力,轴向承载力,电流刚度和位移刚度选为优化设计目标。同时,选择轴向长度,涡流损耗和气隙磁通密度作为优化的约束。最佳结果表明,减小了轴长,减小了涡流损耗,减小了气隙中的谐波,同时提高了承载能力。此外,制造了具有建议的3-DOF HMB的30 kW 60,000 r / min高速电机,并进行了径向/轴向静态承载力测试,在60,000 r / min时空载的高速电机动态性能的实验负载为55,000 r / min。实验结果表明,优化后的3自由度HMB具有良好的受力性能和动态性能。

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