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Metamodels for Optimum Design of Outer-Rotor Synchronous Reluctance Motor

机译:外转子同步磁阻电动机优化设计的元模型

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A new design of synchronous reluctance motor with segment-shaped outer rotor is presented and investigated in this paper. In order to obtain correct recommendations for optimal design of the studied synchronous reluctance motor, analytical relations of motor electromagnetic parameters and geometrical dimensions (also known as metamodels) have been synthesized. Electromagnetic parameters, which have been used for metamodels synthesis, are obtained by means of magnetostatic field numerical calculations with finite element method using software QuickField. The paper includes the analysis of the studied synchronous reluctance motor geometrical parameters (stator outer diameter, height and overlap angle of rotor’s segment-shaped packages) influence on the electromagnetic torque per unit volume. Testing of synthesized metamodels shows that relative difference between the results obtained by numerical calculations and those obtained with the help of synthesized metamodels does not exceed eight percent at experimental points and intermediate points as well. The proposed optimal design of the segment-shaped outerrotor synchronous reluctance motor obtained with the help of synthesized metamodels has been compared with a salient-pole outer-rotor synchronous reluctance motor having ferromagnetic yoke with the same value of the electromagnetic torque. The comparison results of both motors show that the highest value of electromagnetic torque per unit volume can be achieved with the proposed new design of the synchronous reluctance motor with segment-shaped outer rotor.
机译:提出并研究了扇形外转子同步磁阻电动机的新设计。为了获得对所研究的同步磁阻电动机的最佳设计的正确建议,已综合了电动机电磁参数和几何尺寸(也称为元模型)的分析关系。通过使用QuickField软件使用有限元方法进行静磁场数值计算,可以获得用于元模型合成的电磁参数。本文包括对研究的同步磁阻电动机的几何参数(定子外径,转子的扇形包装的高度和重叠角)的影响进行分析,这些参数对每单位体积的电磁转矩有影响。对合成元模型的测试表明,在实验点和中间点,通过数值计算获得的结果与借助合成元模型获得的结果之间的相对差异也不会超过8%。借助于合成元模型获得的扇形外转子同步磁阻电动机的最佳设计方案已与具有相同电磁转矩值的铁磁轭的凸极外转子同步磁阻电动机进行了比较。两种电动机的比较结果表明,采用提出的扇形外转子同步磁阻电动机的新设计,可以实现每单位体积的电磁转矩的最大值。

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