Nature-based hybrid computational geometry system for optimizing the interior structure of aerospace components

Danil Nagy
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引用次数: 4

Abstract

This talk will describe a recent collaboration between our group and the aircraft manufacturer Airbus for the design of a new aerospace component which uses cutting-edge design and fabrication techniques to radically reduce the weight of the component while maintaining the same structural performance. To achieve these results, we developed a novel computational geometry system which combines a bottom-up growth strategy based on slime mold behavior from nature, with a top-down genetic algorithm framework for optimizing the final design.
航空航天部件内部结构优化的基于自然的混合计算几何系统
本次演讲将介绍我们小组和飞机制造商空中客车公司最近合作设计的一种新型航空航天部件,该部件采用尖端的设计和制造技术,在保持相同结构性能的同时,从根本上减轻了部件的重量。为了实现这些结果,我们开发了一种新的计算几何系统,该系统结合了基于自然界黏菌行为的自下而上的生长策略,以及用于优化最终设计的自上而下的遗传算法框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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