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首页> 外文期刊>IEEE Transactions on Magnetics >Optimum Design of Synchronous Reluctance Motors Based on Torque/Volume Using Finite-Element Method and Sequential Unconstrained Minimization Technique
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Optimum Design of Synchronous Reluctance Motors Based on Torque/Volume Using Finite-Element Method and Sequential Unconstrained Minimization Technique

机译:基于转矩/体积的有限元和序贯无约束最小化同步磁阻电机的优化设计

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摘要

This paper deals with an automatic rotor optimum design strategy based on torque/volume for a synchronous reluctance motor (SynRM). The focus of this paper is the design relative to the torque/volume on the basis of each rated watt according to the rotor diameters of an SynRM. The coupled finite elements analysis and sequential unconstrained minimization technique have been used to evaluate design solutions. The proposed procedure allows us to define the rotor geometric design function according to the rotor diameter and rated watt starting from an existing motor or a preliminary design.
机译:本文针对同步磁阻电动机(SynRM),提出了一种基于转矩/体积的转子自动优化设计策略。本文的重点是根据SynRM转子直径,在每个额定瓦特的基础上相对于转矩/体积的设计。耦合有限元分析和顺序无约束最小化技术已用于评估设计解决方案。提出的程序使我们能够根据转子直径和额定功率(从现有电动机或初步设计开始)来定义转子几何设计功能。

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