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Design Optimization and Analysis of a Dual-Permanent-Magnet-Excited Machine Using Response Surface Methodology

机译:基于响应面法的双永磁励磁机设计优化与分析

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The dual-permanent-magnet-excited (DPME) machine employs permanent magnets (PMs) both on the stator and the rotor. It relies on the bi-directional field modulation effect (BFME) to achieve stable electromechanical energy conversion. Therefore, this new type of machine is capable of offering much higher torque capability than its traditional counterparts. This paper is devoted to investigating the optimum design method for improving the BFME of DPME machines, so as to further improve their produced electromagnetic torques. Response surface methodology is engaged to investigate the impacts of shape factors of the stator and rotor slots on the torque capability of the DPME machine, and the fitted models are built up by using both the finite element method (FEM) and the least-squares method. After that, the optimum shape factors are obtained from the fitted models. The results estimated by using both two-dimensional (2D)-FEM and three-dimensional (3D)-FEM demonstrate that the pull-out torque of the optimum case is 24.5% larger than that of the initial case, while the usage of PM material of the optimum case is 8.9% less than that of the initial case.
机译:双永磁励磁(DPME)电机在定子和转子上均采用永磁体(PM)。它依靠双向场调制效应(BFME)来实现稳定的机电能量转换。因此,这种新型机器能够提供比传统机器更高的扭矩能力。本文致力于研究改进DPME机器的BFME的最佳设计方法,从而进一步提高其产生的电磁转矩。运用响应面方法研究定子和转子槽的形状因数对DPME电机扭矩能力的影响,并使用有限元方法(FEM)和最小二乘法建立拟合模型。之后,从拟合模型中获得最佳形状因子。通过同时使用二维(2D)-FEM和三维(3D)-FEM估计的结果表明,最佳情况下的拉出扭矩比初始情况下大24.5%,而使用PM最佳情况下的材料比初始情况下少8.9%。

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