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Development of a Direct Drive Synchronous Reluctance Motor with a Surrogate-Assisted Optimization Technique

机译:具有代理辅助优化技术直接驱动同步磁阻电动机的开发

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This paper presents 24-kW synchronous reluctance motor for close coupled centrifugal pump. The stator of the machine has 4-poles, 36 slots which are similar to an induction motor. The paper is focused on a new rotor design of the motor firstly by the finite element method (FEM). It is aimed to reduce power losses and torque ripples. The rotor is optimized with series of varying flux barrier width, flux carrier width, barrier edge angle and shaft diameter. The surrogate assisted technique has been applied while using a particle swarm optimization method in order to improve the performance of the motor. The simulation carried out at different designs and shapes and finally chosen the best 3 V-shaped flux barriers design for the prototype development. The simulation and experimental results show the excellent potential of the suggested optimal rotor design which can provide a good average torque with low ripples and can be right choice for the industrial applications. The main advantage is an increase of power with low power losses and good thermal performance.
机译:本文介绍了用于紧密耦合离心泵的24千瓦同步磁阻电机。机器的定子具有4个极,36个槽,类似于感应电动机。本文首先通过有限元方法(FEM)首选在电动机的新转子设计上。它旨在降低功率损耗和扭矩涟漪。转子通过串联变化的磁通屏障宽度,磁通载体宽度,屏障边缘角和轴直径进行了优化。使用粒子群优化方法的同时应用了代理辅助技术,以提高电动机的性能。模拟在不同的设计和形状下进行,最后选择了用于原型开发的最佳3 V形磁通屏障设计。模拟和实验结果表明,建议的最佳转子设计的优异潜力,可以提供具有低涟漪的良好平均扭矩,并且可以对工业应用做出正确的选择。主要优点是具有低功率损耗和良好热性能的功率增加。

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