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Topology Optimization of IH-equipment Using Heaviside Function in 2-D Axisymmetric Electromagnetic Field

机译:二维轴对称电磁场中使用全碱性功能的IH设备拓扑优化

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Topology optimization is one of the mathematical methods for finding the optimal structure of electrical machinery. Because topology optimization can make a design with much higher degree of freedom in terms of structure than other optimization methods, there is a possibility for achieving a completely new shape that is not limited to the conventional model. The optimized structure is strongly dependent on the characteristic function which is an explicit function with respect to the design variable. To identity the practical topology in which the gray scale elements do not exist as much as possible, Heaviside function is suitable to suppress the generation of gray scale. In this paper, Heaviside function is applied to the IH equipment problem, and both influences of the difference between single and multiple design domain and the difference of the constraint value of the magnetic body volume on optimal solution are particularly investigated.
机译:拓扑优化是寻找电机最佳结构的数学方法之一。因为拓扑优化可以在结构方面具有比其他优化方法的结构更高的自由度,所以可以实现不限于传统模型的全新形状。优化结构强烈依赖于相对于设计变量的明确功能的特征函数。对于身份,灰度元素不尽可能地不存在的实际拓扑,潜水功能适合抑制灰度的产生。在本文中,将沉重的功能应用于IH设备问题,并且特别研究了单个和多种设计结构域之间的差异的影响以及磁体积的约束值对最佳解决方案的差异。

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