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Torque Profile Improvement of a Synchronous Reluctance Motor through Optimizing the Rotor Flux Barriers Ends

机译:通过优化转子磁通势垒端来改善同步磁阻电动机的转矩分布

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Synchronous reluctance machines have gained interest due to their PM-free and robust structure and also the capability for high efficiency compared with the induction motors. In this paper, an efficient optimization procedure is studied to improve their torque profile characteristics including torque capability and torque ripple. For this purpose, the optimization is focused on the rotor flux barriers end sizing. A surrogate model is first developed based on the response surface methodology, and then an intelligent multi-objective optimization algorithm is used to find the optimal design. Finite elements model is employed to create the required dataset based on the Design of Experiments methods, as well as to verify the final results.
机译:同步磁阻电机由于其无PM且坚固的结构以及与感应电动机相比具有的高效率能力而引起了人们的兴趣。本文研究了一种有效的优化程序,以改善其转矩分布特性,包括转矩能力和转矩脉动。为此,优化主要集中在转子磁通势垒端的尺寸上。首先基于响应面方法开发代理模型,然后使用智能的多目标优化算法找到最优设计。有限元模型用于根据“实验设计”方法创建所需的数据集,并验证最终结果。

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