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Cogging Torque Calculation for IPM Having Single Layer Based on Magnetic Circuit Model

机译:基于磁路模型的单层IPM齿槽转矩计算

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摘要

This research shows that it is possible and effective to predict the cogging torque waveform of the interior permanent magnet (IPM) machine using only an analytical model. Based on the proposed virtual permanent magnet (PM) concept, IPM can be considered as surface PM having zero height and unit relative permeability, and then it is used for calculating the cogging torque with conventional technique. Among the evaluation methods for cogging torque, lateral force method, which is based on lateral force acting on stator teeth, is selected. For the validation of proposed concept, finite element analysis is used. From the analysis results, it is shown that our new proposed concept presents good performance in terms of optimal position of peak cogging torque, cogging torque waveform, and the peak value. Therefore, the proposed concept can be useful in design of IPM requiring several computation processes.
机译:这项研究表明,仅使用解析模型预测内部永磁体(IPM)机器的齿槽转矩波形是可能且有效的。基于提出的虚拟永磁体(PM)概念,IPM可被视为具有零高度和单位相对磁导率的表面PM,然后将其用于常规技术中的齿槽转矩计算。在齿槽转矩的评估方法中,选择了基于作用在定子齿上的横向力的横向力方法。为了验证所提出的概念,使用了有限元分析。从分析结果可以看出,我们提出的新概念在峰值齿槽转矩的最佳位置,齿槽转矩波形和峰值的最佳位置方面表现出良好的性能。因此,提出的概念对于需要几个计算过程的IPM设计很有用。

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