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A Study on Optimal Design of the Triangle Type Permanent Magnet in IPMSM Rotor by Using the Box–Behnken Design

机译:基于Box–Behnken设计的IPMSM转子三角型永磁体优化设计研究

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摘要

This paper proposes an optimal rotor design method of an interior permanent magnet synchronous motor (IPMSM) by using a permanent magnet (PM) shape. An IPMSM is a structure in which PMs are buried in an inner rotor. The torque, torque ripple, and safety factor of IPMSM can vary depending on the position of the inserted PMs. To determine the optimal design variables according to the placement of the inserted PMs, parameter analysis was performed. Therefore, a response surface methodology, which is one of the statistical analysis design methods, was used. Among many other response surface methodologies, Box–Behnken design is the most commonly used. For the purpose of this research, Box–Behnken design was used to find the design parameter that can achieve minimum experimental variables of objective function. This paper determines the insert position of the PM to obtain high-torque, low-torque ripple by using a finite-element-method, and this paper obtains an optimal design by using a mechanical stiffness method in which a safety factor is considered.
机译:本文提出了一种利用永磁体(PM)形状的内部永磁同步电动机(IPMSM)的最佳转子设计方法。 IPMSM是其中PM埋在内部转子中的结构。 IPMSM的扭矩,扭矩波动和安全系数会根据插入的PM的位置而变化。为了根据插入的PM的位置确定最佳设计变量,进行了参数分析。因此,使用了响应面方法,它是统计分析设计方法之一。在许多其他响应面方法中,Box-Behnken设计是最常用的。为了本研究的目的,使用Box–Behnken设计来找到可以实现目标函数的最小实验变量的设计参数。本文通过有限元方法确定永磁电机的插入位置,以获得高转矩,低转矩脉动,并通过考虑安全系数的机械刚度方法获得最佳设计。

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