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基于Kriging模型的载人航天某装置结构优化设计研究
引用本文:刘磊,刘洪英,马爱军,冯雪梅,石蒙,董睿,赵亚雄. 基于Kriging模型的载人航天某装置结构优化设计研究[J]. 环境技术, 2016, 0(2): 55-59. DOI: 10.3969/j.issn.1004-7204.2016.02.016
作者姓名:刘磊  刘洪英  马爱军  冯雪梅  石蒙  董睿  赵亚雄
作者单位:中国航天员科研训练中心,北京,100094
摘    要:对于处在振动环境中的载人航天某装置复杂结构,设计过程中存在最小化质量、同时最大化一阶整体振动频率的多目标优化问题,可以利用多目标遗传算法(NSGA-II)求解得到Pareto最优解集,但利用NSGA-II进行求解计算量大,对于复杂结构更甚。为了节省计算时间,提出基于Kriging代理模型的复杂结构多目标优化设计方法,首先通过拉丁超立方采样获得样本点,然后通过样本点创建Kriging模型,最后利用多目标遗传算法求解代理模型得到Pareto最优解集,方便设计师从中选择最优解,优化结果表明本文所述方法合理有效。

关 键 词:载人航天装置  结构优化设计  Kriging模型  拉丁超立方试验设计  多目标遗传算法  Pareto解集

Study on Structural Optimization of a Manned Aerospace Assembly Based on Kriging Model
Abstract:For a manned aerospace assembly under vibration environment, there are two objectives in design phase: min mass and max first integral vibration frequency. Usually it can be solved by using multi-objective genetic algorithm (NSGA-II), but the computing amount is too large, especially for complex structure. To drop the computing time of using of NSGA-II in multi-objective structural optimization, a method based on Kriging model was proposed. The method achieved the samples from Latin hypercube design firstly and created the Kriging model based on the samples. Then multi-objective optimization problem could be solved using NSGA-II on the Kriging model and got the Pareto set finally. The results verify the effectiveness and practicability of the method.
Keywords:manned aerospace assembly  structural optimization design  Kriging model  Latin hypercube design  multi-objective genetic algorithm  Pareto set
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