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Multi-objective optimization design of interior permanent-magnet synchronous motors for improving the effectiveness of field weakening control

机译:内部永磁同步电动机的多目标优化设计,提高现场弱化控制效能

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To improve the operation performances of an interior permanent-magnet synchronous motor (IPMSM) under field-weakening (FW) control mode, this paper presented a multi-objective optimization design method to obtain the optimal geometric parameters of IPMSM to achieve multiple quality targets for an inverter-based refrigerant compressor application. Three design targets that contain the high reluctance torque, the high power factor, and the low torque ripple are studied. The multi-target fuzzy-inference Taguchi method and the finite element method (FEM) are employed to solve the multi-objective optimization problem and to obtain the best geometric parameters' combination of the IPMSM machine. Experimental results have showed that the proposed method can rigorously and effectively obtain the optimal geometric parameters of an IPMSM machine for enhancing the motor performances under FW control mode.
机译:为了在现场弱化(FW)控制模式下改善内部永磁同步电动机(IPMSM)的操作性能,本文提出了一种多目标优化设计方法,以获得IPMSM的最佳几何参数,以实现多种质量目标 基于逆变器的制冷剂压缩机应用。 研究了包含高磁阻扭矩,高功率因数和低扭矩波纹的三个设计目标。 多目标模糊推理Taguchi方法和有限元方法(FEM)用于解决多目标优化问题,并获得IPMSM机器的最佳几何参数的组合。 实验结果表明,所提出的方法可以严格且有效地获得IPMSM机器的最佳几何参数,用于在FW控制模式下提高电动机性能。

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