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Topological Design for 3-D Optimization Using the Combination of Multistep Genetic Algorithm with Design Space Reduction and Nonconforming Mesh Connection

机译:多步遗传算法与减少设计空间和不协调网格连接相结合的3-D优化拓扑设计

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摘要

Topology optimization, which identifies the optimal combination of ON-OFF material, is one of the most attractive tools in the initial conceptual and practical design of electrical machineries for engineers. Heuristic optimization algorithms based on the random search flexibly allow the engineers to define the objective function. However, there are huge iterations of finite element analysis in 3-D topological optimization according to many design variables. It is difficult to show the practical solution without the island and void distributions. This paper presents the 3-D topological optimization method based on multistep utilization of GA. Proposed method can obtain a practical solution, and the convergence is remarkably improved by the design space reduction. Furthermore, the elapsed time for 3-D optimization can be more reduced to a quarter of conventional analysis by the combination of nonconforming mesh connection.
机译:拓扑优化,确定了ON-OFF材料的最佳组合,是工程师针对电气设备进行初始概念和实际设计时最有吸引力的工具之一。基于随机搜索的启发式优化算法使工程师可以灵活地定义目标函数。但是,根据许多设计变量,在3-D拓扑优化中存在有限元分析的大量迭代。没有孤岛和空隙分布,很难显示出实际的解决方案。本文提出了一种基于遗传算法多步利用的3-D拓扑优化方法。所提出的方法可以获得实用的解决方案,并且通过减少设计空间显着改善了收敛性。此外,通过结合不合格的网格连接,可以将3-D优化的经过时间进一步减少到常规分析的四分之一。

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