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首页> 外文期刊>International journal of applied electromagnetics and mechanics >The cross-coupling problem caused by the structure of a combined radial-axial magnetic bearing for DC motors
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The cross-coupling problem caused by the structure of a combined radial-axial magnetic bearing for DC motors

机译:直流电动机组合径向轴磁轴承结构引起的交叉耦合问题

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Different from separated magnetic bearing units, combined radial-axial magnetic bearing (CRAMB) has cross coupling problem caused by structure itself. This paper focuses on the study of cross coupling problem for a CRAMB caused by structure itself. An equivalent magnetic circuit model (EMCM) considering the leakage and coupling effects was presented to analyze the mechanism of cross coupling. The analysis results show that due to the influence of magnetic flux leakage and common bias magnetic circuit, cross coupling between axial and radial direction caused by the structure itself of a CRAMB cannot be ignored. The coupling degrees of factors that cause cross coupling are analyzed based on the combination of EMCM and finite element method (FEM). The analysis results show that the coupling effect caused by axial magnetic flux leakage was most serious. To solve the coupling problem caused by the structure itself, the coupled transfer function is derived. This coupled transfer function has been added in the original controller. Experimental results show that the cross coupling effect was reduced effectively and CRAMB can levitate the rotor at 48000 r/min stably with the improved controller.
机译:与分离的磁轴承单元不同,组合的径向轴向磁轴承(Cramb)具有由结构本身引起的交叉耦合问题。本文重点研究了结构本身引起的碎屑的交叉耦合问题。考虑泄漏和耦合效果的等效磁路模型(EMCM)以分析交叉耦合的机制。分析结果表明,由于磁通漏漏和公共偏置磁路的影响,由轴向和径向由粗喇嘛的结构本身引起的交叉耦合不能忽略。基于EMCM和有限元方法(FEM)的组合分析引起交叉耦合的耦合度因子。分析结果表明,由轴向磁通量泄漏引起的耦合效果最为严重。为了解决由结构本身引起的耦合问题,导出耦合传递函数。该耦合传递函数已添加在原始控制器中。实验结果表明,有效减少了交叉耦合效果,并且Cramb可以与改进的控制器稳定地稳定地用48000 r / min浮动转子。

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