Enhanced Sequential Optimization and Reliability Assessment Method for Changing Design Variance

X. Yin, Wei Chen
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引用次数: 1

Abstract

The Sequential Optimization and Reliability Assessment (SORA) method is a single loop method containing a sequence of cycles of decoupled deterministic optimization and reliability assessment for improving the efficiency of probabilistic optimization. However, the original SORA method as well as some other existing single loop methods is not efficient for solving problems with changing variance. In this paper, to enhance the SORA method, three formulations are proposed by taking the effect of changing variance into account. These formulations are distinguished by the different strategies of Inverse Most Probable Point (IMPP) approximation. Mathematical examples and a pressure vessel design problem are used to test and compare the effectiveness of the proposed formulations. The “Direct Linear Estimation Formulation” is shown to be the most effective and efficient approach for dealing with problems with changing variance. The gained insight can be extended and utilized to other optimization strategies that require MPP or IMPP estimations.
变化设计方差的改进序贯优化与可靠性评估方法
序列优化与可靠性评估(SORA)方法是一种单环方法,包含一系列解耦确定性优化和可靠性评估的循环,以提高概率优化的效率。然而,原有的SORA方法以及现有的一些单环方法对于变化方差问题的求解效率不高。为了增强SORA方法,本文提出了考虑方差变化影响的三种公式。这些公式通过逆最可能点(IMPP)近似的不同策略来区分。用数学实例和一个压力容器设计问题来检验和比较所提出公式的有效性。“直接线性估计公式”被证明是处理变化方差问题最有效的方法。获得的见解可以扩展并用于需要MPP或IMPP估计的其他优化策略。
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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