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Multi-objective optimization design of a PM-less synchronous motor using simplified response surface method

机译:使用简化响应曲面法的多目标优化设计PM少的同步电动机

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For cost-effective concern, how to reduce the usage amount of the rare-earth permanent-magnet (NdFeB) in an IPMSM has become an important research issue. Fortunately, the less permanent-magnet synchronous motor (PM-Less SM) with confusing rotor flux barriers and clever permanent-magnet arrangement has the potential to become high-performance motor. The main advantage is through ingenious geometric structure design, the PM-Less SM can have larger inductance difference (L-L) and torque angle (δ) to enhance the reluctance torque component that is shown, thus the output torque of the PM-Less SM is able to meet the requirement of load. Hence, under cost-effective concern, the PM-Less SM gradually has become a hot research topic. In this paper, a simplified response surface method (SRSM) with the shuffled frog leaping algorithm (SFLA) is proposed to find the most suitable shape of rotor flux barriers and the PM usage amount to improve the motor's performances, such as lower torque ripple and higher power factor. Experimental results show that the proposed method can rigorously and effectively obtain optimal geometric parameters of a PM-Less SM machine for enhancing the motor performances.
机译:对于具有成本效益的关注,如何降低IPMSM中稀土永磁体(NDFEB)的使用量已成为一个重要的研究问题。幸运的是,具有混乱的转子通量屏障和巧妙的永磁装置的永久性磁铁同步电动机(PM-DIMES SM)具有变得高性能电动机的可能性。主要优点是通过巧妙的几何结构设计,PM的SM可以具有较大的电感差(LL)和扭矩角(Δ)来增强所示的磁阻扭矩分量,因此PM的SM的输出扭矩是能够满足负载的要求。因此,在经济有效的关注下,PM的SM逐渐成为一个热门的研究主题。在本文中,提出了一种简化的响应表面方法(SRSM)与混洗蛙跳跃算法(SFLA),以找到最合适的转子通量屏障形状和PM使用量,以改善电动机的性能,例如较低的扭矩波动更高的功率因数。实验结果表明,该方法可以严格且有效地获得PM的SM机的最佳几何参数,以增强电动机性能。

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