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Optimal design of electromagnetic devices: Development of an efficient optimization tool based on smart mutation operations implemented in a genetic algorithm

机译:电磁设备的优化设计:基于遗传算法中实现的智能变异操作的高效优化工具的开发

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Topology optimization methods are aimed to produce optimal design. These tools implement optimization algorithms that modify the distribution of some materials within a predefined design space without a priori ideas regarding the topology or the geometry of the best solution. In this paper, we study a specific tool that combines a genetic algorithm, a material distribution formalism based on Voronoi cells and a commercial FEM evaluation tool. In particular, this paper shows, through a simple but representative case study, that it is possible to improve the performance of the topology optimization tool during the local search phase, i.e. the geometrical and dimensional optimization phase for which the topology optimization methods are originally not well-suited.
机译:拓扑优化方法旨在产生最佳设计。这些工具实现了优化算法,该算法可修改预定义设计空间内某些材料的分布,而无需有关最佳解决方案的拓扑或几何的先验思想。在本文中,我们研究了一种结合了遗传算法,基于Voronoi细胞的材料分配形式主义和商业FEM评估工具的特定工具。特别是,本文通过一个简单但具有代表性的案例研究表明,可以在本地搜索阶段(即最初不使用拓扑优化方法的几何和尺寸优化阶段)期间改进拓扑优化工具的性能。非常适合。

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