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Optimum shape design of single-sided linear induction motors using response surface methodology and finite element method

机译:基于响应面法和有限元法的单侧直线感应电动机的最佳形状设计

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This paper deals with finding the optimal ratio of height and length of Single-Sided Linear Induction Motors (SLIM) using Finite Element Method (FEM) for magnetic field analysis coupled with optimal design methodology. For effective analysis, FEM is conducted in time harmonic field which provides steady state performance with the fundamental components of voltage and current. The ratio of height to length providing the required output power is obtained by Response Surface Methodology (RSM) and optimal values are presented by the variation in output power. When output power is small, the ratio is high and as the power increases, the ratio shows a converged value. Considering the general application of linear motors, using a small ratio can be limiting, however, the shape ratio for maximum thrust can be identified.
机译:本文旨在利用有限元方法(FEM)结合优化设计方法,找到单侧直线感应电动机(SLIM)的最佳长高比。为了进行有效的分析,有限元分析是在时间谐波场中进行的,该谐波场提供具有电压和电流基本成分的稳态性能。通过响应表面方法(RSM)获得提供所需输出功率的高度与长度之比,并通过输出功率的变化来表示最佳值。当输出功率较小时,该比率较高,并且随着功率增加,该比率将显示一个收敛值。考虑到线性电动机的一般应用,使用较小的比率可能会受到限制,但是可以确定最大推力的形状比率。

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