基于形状设计灵敏度分析的电磁器件设计优化

C. Koh, Osama A. Mohammed, S. Hahn
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引用次数: 0

摘要

提出了一种新的电磁器件形状优化设计方法。该方法结合了形状设计灵敏度、边界元法和最陡下降法。采用隐式微分法和直接二维/三维边界元法,推导了目标函数对设计变量的总导数形状设计灵敏度公式。在最陡下降算法中,形状设计灵敏度作为目标函数的梯度。将该方法应用于领带静电/静磁器件的二维和三维形状优化设计中。数值算例表明,该方法在合理的迭代次数下,可以很容易地找到最优形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design optimization of electromagnetic devices using shape design sensitivity analysis
This paper presents a novel shape optimal design method for the design of electromagnetic devices. The method combines the shape design sensitivity, boundary element method and the steepest descent algorithm. The shape design sensitivity formula, the total derivative of the objective function with respect to the design variable, is derived by using the implicit differentiation method and the direct 2-D/3-D boundary element method. The shape design sensitivity is used as the gradient of the objective function in the steepest descent algorithm. The proposed method is applied to the optimum shape design of tie electrostatic/magnetostatic devices in 2-D and 3-D. It is shown, through the numerical examples, that the optimum shapes are easily found with a reasonable number of iterations by the proposed method.<>
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