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Equivalent Magnetic Circuit Analysis of Doubly Salient PM Machine With Π-Shaped Stator Iron Core Segments

机译:双重阳光PM机的等效磁路分析,具有π形定子铁芯段

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An equivalent magnetic circuit (EMC) analytical method for a 3-phase doubly salient permanent magnet (DSPM) machine with & x03A0;-shaped stator iron core segments (& x03A0;-core DSPM machine) is presented in this paper. This method is based on the airgap field modulation theory. First, the airgap permeance of the doubly salient machine is calculated, based on which the influence of slotting on modulation effect is analyzed. Then, an EMC model of this machine is established according to its main magnetic field distribution. Considering the slotting effect on the average airgap flux density, Carter & x0027;s coefficient is used to calculate the equivalent airgap length and the airgap magnetomotive force (MMF). Subsequently, the flux density is calculated, which allows the calculation of no-load electromotive force (EMF) and also on-load torque. In addition, the relationship between machine performances and key dimensions can be obtained by analytical expressions without complicated finite element analysis (FEA). Analytical results are validated by both the 2-dimension FEA and experimental results.
机译:用&x03a0的三相双重阳光永磁体(DSPM)机器的等效磁路(EMC)分析方法;本文提出了X03A0;形状的定子铁芯段(&x03a0; -core dspm机器)。该方法基于Aia Pap场调制理论。首先,计算双重凸机的气隙渗透率,基于调节对调制效果的影响。然后,根据其主要磁场分布建立该机器的EMC模型。考虑到对平均气隙助焊剂密度,卡特和X0027; S系数的插槽效应用于计算等效的气隙长度和气隙磁带力(MMF)。随后,计算磁通密度,这允许计算无负载电动势(EMF)和负载扭矩。另外,机器性能与关键尺寸之间的关系可以通过分析表达而没有复杂有限元分析(FEA)获得。分析结果由2维FEA和实验结果验证。

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