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Optimum design of switched reluctance motor to minimize torque ripple using ordinary Kriging model and genetic algorithm

机译:开关磁阻电动机的优化设计,以普通克里格模型和遗传算法最小化扭矩脉动

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This paper presents a 3 phase 6/4 pole switched reluctance motor (SRM) with a low torque ripple. In order to reduce torque ripple especially in silent operation, a new stator pole face shape and a pole shoe attached to the lateral face of the rotor pole are designed based on an efficient optimization strategy employing Ordinary Kriging model and genetic algorithm (GA). In this optimization method, the uniform sampling technique is used to obtain some sampling points in the design space, and Ordinary Kriging uses an interpolation function to approximate the design objective. The GA is used to find the minimum of Kriging function instead of solving the optimization problem by finite element method. It is verified that the proposed algorithm can reduce the torque ripple of SRM effectively with high computation efficiency.
机译:本文介绍了具有低扭矩纹波的3相6/4极开关磁阻电动机(SRM)。为了减少扭矩纹波,特别是在静默操作中,基于采用普通Kriging模型和遗传算法(GA)的有效优化策略,设计了一种新的定子极面形和附着在转子杆的侧面的杆靴。在这种优化方法中,使用均匀采样技术来获得设计空间中的一些采样点,并且普通的Kriging使用插值函数来近似设计目标。 GA用于找到最小的kriging函数,而不是通过有限元方法解决优化问题。验证所提出的算法可以有效地降低SRM的扭矩脉动,具有高计算效率。

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