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contributor authorQuanyao Chen
contributor authorYuyue Gao
contributor authorLieyun Ding
contributor authorCheng Zhou
contributor authorWenbin Han
contributor authorYan Zhou
contributor authorYusheng Shi
date accessioned2023-11-27T23:04:46Z
date available2023-11-27T23:04:46Z
date issued7/31/2023 12:00:00 AM
date issued2023-07-31
identifier otherJAEEEZ.ASENG-4755.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4293269
description abstractThe establishment of lunar habitats is significant for humans to explore the Moon and carry out scientific work. Constructing lunar habitats through additive manufacturing using lunar in situ resource is a promising solution. This study proposed a parametric design and multiobjective optimization approach based on genetic algorithms for the structure of lunar habitats. Structural shape was translated into design parameters, which were optimized during the design phase. The optimization objectives were determined considering the material mass consumption, space efficiency, and resistance ability for extreme extraterrestrial environment of the structure. Three kinds of genetic algorithm–based multiobjective optimization methods were used and compared to optimize the structural parameters. The optimized Pareto solution set containing multiple solutions based on the hypervolume index are obtained. Finite-model analysis was performed on the structures of the Pareto solution set and the optimal structure was determined based on the results of maximum stress and displacement. Finally, partially scaled-down physical models were produced through additive manufacturing to demonstrate the optimized double-shell habitat structure.
publisherASCE
titleGenetic Algorithm–Based Multiobjective Optimization for 3D Printable Design of a Double-Shell Lunar Habitat Structure
typeJournal Article
journal volume36
journal issue6
journal titleJournal of Aerospace Engineering
identifier doi10.1061/JAEEEZ.ASENG-4755
journal fristpage04023069-1
journal lastpage04023069-20
page20
treeJournal of Aerospace Engineering:;2023:;Volume ( 036 ):;issue: 006
contenttypeFulltext


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