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A new adaptive response surface method for reliability analysis

机译:一种新的自适应响应面可靠性分析方法

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摘要

Response surface method is a convenient tool to assess reliability for a wide range of structural mechanical problems. More specifically, adaptive schemes which consist in iteratively refine the experimental design close to the limit state have received much attention. However, it is generally difficult to take into account a lot of variables and to well handle approximation error. The method, proposed in this paper, addresses these points using sparse response surface and a relevant criterion for results accuracy. For this purpose, a response surface is built from an initial Latin Hypercube Sampling (LHS) where the most significant terms are chosen from statistical criteria and cross-validation method. At each step, LHS is refined in a region of interest defined with respect to an importance level on probability density in the design point. Two convergence criteria are used in the procedure: The first one concerns localization of the region and the second one the response surface quality. Finally, a bootstrap method is used to determine the influence of the response error on the estimated probability of failure. This method is applied to several examples and results are discussed.ud
机译:响应面法是评估各种结构机械问题可靠性的便捷工具。更具体地说,以迭代方式定义接近极限状态的实验设计的自适应方案受到了广泛关注。但是,通常很难考虑很多变量并很好地处理近似误差。本文提出的方法使用稀疏响应面和结果准确性的相关标准来解决这些问题。为此,从最初的拉丁超立方采样(LHS)构建响应面,其中从统计标准和交叉验证方法中选择最重要的术语。在每个步骤中,LHS都会在一个感兴趣的区域中进行定义,该区域相对于设计点中概率密度的重要性级别进行了定义。该过程中使用了两个收敛准则:第一个准则涉及区域的局部性,第二个准则涉及响应表面的质量。最后,使用自举方法来确定响应错误对估计失败概率的影响。此方法适用于几个示例,并讨论了结果。 ud

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