Optimal design of electromechanical devices using a hybrid finite element/air-gap element method

Yanni Li, D. Aliprantis
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引用次数: 8

Abstract

This paper contributes a mathematical framework for rotating electric machine optimal design. The proposed method utilizes a hybrid finite element/air-gap macro-element method, with steepest descent optimization. In particular, the air-gap element is advantageous for torque optimization, since it directly yields a smooth magnetic field function in the air-gap and an analytic expression for torque, based on the magnetic potential solution at the vertices of the finite element mesh. The sensitivity of an arbitrary objective function with respect to changes in geometric design parameters can be used in the steepest descent method. For illustration purposes, the optimization process is applied to a simple electromagnet for torque maximization.
基于混合有限元/气隙单元法的机电设备优化设计
本文为旋转电机优化设计提供了数学框架。该方法采用最陡下降优化的有限元/气隙宏元混合方法。特别是,气隙单元有利于转矩优化,因为它直接产生了气隙中平滑的磁场函数和基于有限元网格顶点处磁势解的转矩解析表达式。任意目标函数对几何设计参数变化的敏感性可用于最陡下降法。为了说明目的,优化过程应用于一个简单的电磁铁扭矩最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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