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Optimization of permanent magnet motor air-gap flux density based on the non-uniform air gap

机译:基于不均匀气隙的永磁电动机气隙磁通密度优化

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In order to reduce the negative effects of permanent magnet motor performance caused by excessive harmonic content in air-gap magnetic field, the optimal design of permanent magnet motor based on the Taguchi method and time-stepping FEM with built-in “V” type rotor magnetic circuit structure was proposed in this paper. Firstly, taking four structural parameters of permanent magnet motor as optimization variables and two characteristics of motor as constraint, the multi-objective multivariate optimization of the permanent magnet rotor with the structure of non-uniform air gap was carried out and the optimum rotor structure with the appropriate no-load air gap flux density waveform is obtained. Then the advantage and the accuracy of the optimized results with Taguchi method were verified by comparing the air gap flux density harmonic content before and after the optimization. Finally, the electromotive force waveform considering the stator skewed slots was calculated with time-stepping FEM to verify the effectiveness of the air-gap flux density optimization further.
机译:为了减少气隙磁场中过多的谐波含量对永磁电动机性能的不利影响,基于田口法和内置“ V”型转子的时步有限元法的永磁电动机的优化设计本文提出了磁路结构。首先,以永磁电动机的四个结构参数为优化变量,以电动机的两个特性为约束条件,对气隙不均匀的永磁转子进行了多目标多变量优化,得出了最优的转子结构。得到合适的空载气隙磁通密度波形。通过比较优化前后气隙磁通密度谐波含量,验证了用田口法优化结果的优势和准确性。最后,利用时步有限元法计算了考虑定子斜槽的电动势波形,进一步验证了气隙磁通密度优化的有效性。

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