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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Simulation-based robust design of complex product considering uncertainties of metamodel, design variables, and noise parameters
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Simulation-based robust design of complex product considering uncertainties of metamodel, design variables, and noise parameters

机译:考虑Metomodel,设计变量和噪声参数的不确定性,模拟基于复杂产品的鲁棒设计

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摘要

The uncertainties of design variables, noise parameters, and metamodel are important factors in simulation-based robust design optimization. Most conventional metamodel construction methods only consider one or two uncertainties. In this paper, a new surrogate modeling method simultaneously measuring all the uncertainties is proposed for simulation-based robust design optimization of complex product. The effect of metamodel uncertainty on product performance uncertainty is quantified through uncertainty propagation analysis among design variables uncertainty, noise parameters uncertainty, metamodel uncertainty, and performance uncertainty. Then, the sampling points are selected and the metamodel is constructed based on the predictive interval of product performance and mean square error of the Kriging metamodel. The constructed metamodel is applied to robust design optimization considering multiple uncertainties. Results of two mathematical examples show that the proposed metamodel considering multiple uncertainties increases the result accuracy of robust design optimization. Finally, the proposed algorithm is applied to robust design optimization of a heat exchanger, and the total heat transfer rate is enhanced under uncertainties of fin structural parameters, operation conditions parameters and simulation metamodel.
机译:设计变量,噪声参数和元模型的不确定性是基于仿真的鲁棒设计优化中的重要因素。大多数传统的元模型施工方法只考虑一个或两个不确定性。本文采用了一种新的代理建模方法,同时测量所有不确定性的所有不确定性,用于复杂产品的仿真鲁棒设计优化。通过设计变量不确定性,噪声参数不确定度,元形状不确定性和性能不确定性,通过不确定的传播分析量化了Metamodel不确定性对产品性能不确定性的影响。然后,选择采样点,并且基于Kriging Metomodel的产品性能的预测间隔构建元模型。考虑多个不确定性,构造的元模型应用于鲁棒设计优化。两个数学例子的结果表明,考虑多个不确定性的建议的元模型增加了鲁棒设计优化的结果准确性。最后,该算法应用于热交换器的鲁棒设计优化,并且在鳍片结构参数的不确定性,操作条件参数和仿真元模型下增强了总传热速率。

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