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Influence of Soft Magnetic Material in a Permanent Magnet Synchronous Machine With a Commercial Induction Machine Stator

机译:带有商用感应电机定子的永磁同步电机中软磁材料的影响

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This paper presents the efficiency study of a 6-pole and 2-pole induction motor (IM), converted into a 6-pole and 2-pole permanent magnet synchronous machine (PMSM). Firstly, the stator of the IM was kept unchanged and the rotor was converted into a permanent magnet (NdFeB magnets) rotor, resulting in higher average efficiency. Secondly, we investigated how much the efficiency can be increased by replacing the electrical steel in the stator by another material grade. The numerical approach is based on the finite element method (FEM), taking into account the rotor movement. Iron losses are computed according to the loss separation theory. From measurements and simulations, it is observed that the efficiency increases significantly compared to the original IM. The average efficiency of the original 1.5 kW IM converted into the 1.5 kW PMSM led to a 14% higher efficiency in a speed range $0.5Omega_{rm nom}-Omega_{rm nom}$ and torque range $0.5T_{rm nom}-T_{rm nom}$. When the stator iron is replaced by M235-35A laminations with the same geometry, the average efficiency increases by an additional 2% for the 1.5 kW PMSM with modified stator.
机译:本文介绍了将6极和2极感应电动机(IM)转换为6极和2极永磁同步电动机(PMSM)的效率研究。首先,IM的定子保持不变,并且将转子转换为永磁(NdFeB磁体)转子,从而提高了平均效率。其次,我们研究了用另一种材料替代定子中的电工钢可以提高多少效率。数值方法基于有限元方法(FEM),并考虑了转子的运动。铁损是根据损耗分离理论计算的。从测量和模拟可以看出,与原始IM相比,效率显着提高。最初的1.5 kW IM转换为1.5 kW PMSM的平均效率在$ 0.5Omega_ {rm nom} -Omega_ {rm nom} $的转速范围和$ 0.5T_ {rm nom} -T_的转速范围内使效率提高了14%。 {rm nom} $。当用具有相同几何形状的M235-35A叠片代替定子铁芯时,采用改良定子的1.5 kW PMSM的平均效率会额外提高2%。

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