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DOE Based Robust Optimization Considering Tolerance Bands of Design Parameters

机译:考虑设计参数公差带的基于DOE的鲁棒优化

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The paper describes a robust optimization method to account for the tolerance of design variable and the variation in problem parameter. The proposed post-optimization effort is initiated from the deterministic optimum as a baseline. The successive process to find search directions and step sizes toward the robust optimum is conducted by determining the worst design that has the highest level in constraint violation. During the selection of the worst design, an orthogonal array fable in the context of design of experiemtns (DOE) is used to reduce the constraint function evaluations especially for higher dimensionality problem. The analysis of means (ANOM) is adopted in a case where the variation in problem parameter is considered. The measurement criterion to select the worst design is based on the degree of cumulative constraint violation. A mathematical function problem is first conducted to examine the tolerance of design variable. A cantilever beam problem described by four design variables and a bracket problem with seven design variables are subsequently explored by considering both tolerance of design variable and variation in problem parameter.
机译:本文介绍了一种鲁棒的优化方法来解决设计变量的公差和问题参数的变化。拟议的后优化工作是从确定性最优值作为基准开始的。通过确定约束违反程度最高的最差设计,可以进行逐步的过程以找到搜索方向和步长,从而达到鲁棒性最优。在选择最差的设计期间,在经验设计(DOE)的背景下使用正交阵列寓言来减少约束函数评估,尤其是对于高维问题。在考虑问题参数变化的情况下,采用均值分析(ANOM)。选择最差设计的度量标准基于累积约束违规程度。首先进行数学函数问题以检查设计变量的公差。随后考虑设计变量的公差和问题参数的变化,探讨了由四个设计变量描述的悬臂梁问题和具有七个设计变量的支架问题。

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