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首页> 外文期刊>International review of electrical engineering >An Effective Method for Optimal Design of Electric Machines Based on Finite Element Analysis
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An Effective Method for Optimal Design of Electric Machines Based on Finite Element Analysis

机译:基于有限元分析的电机优化设计的有效方法

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摘要

This paper presents an effective method for optimal design of electric machines. In this method, three numerical techniques are employed to save computational time related to the time-stepping finite element method (T-SFEM). The first technique involves using the field-circuit coupling steady state FEM to calculate initial values for the time-stepping finite element analysis. The steady state method uses a simpler, faster model to estimate the initial values reasonably close to the actual ones. The second technique is an adaptive meshing adjustment for minor shape modifications in which minor geometric changes can be made without re-meshing. The third technique involves using state variables from the previous design iteration as the initial conditions for the next iteration. Together these three techniques can reduce the total simulation time required to optimally design an electric machine. An example 5.5kW induction motor is discussed and the results demonstrate a significant reduction in simulation time.
机译:本文提出了一种优化电机设计的有效方法。在这种方法中,采用了三种数值技术来节省与时间步长有限元方法(T-SFEM)有关的计算时间。第一种技术涉及使用场电路耦合稳态FEM来计算用于时步有限元分析的初始值。稳态方法使用一个更简单,更快速的模型来估计合理接近实际值的初始值。第二种技术是针对较小形状修改的自适应网格调整,其中可以进行较小的几何变化而无需重新啮合。第三种技术涉及使用前一次设计迭代中的状态变量作为下一次迭代的初始条件。这三种技术一起可以减少优化设计电机所需的总仿真时间。讨论了一个示例5.5kW感应电动机,结果证明了仿真时间的显着减少。

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