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Fuzzy structural analysis based on fundamental reliability concepts

机译:基于基本可靠性概念的模糊结构分析

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摘要

Fuzzy structural analysis is oriented to estimate the membership function of an output structural variable given the membership functions of the input ones, which are discretized in so-called α-cut levels. Such an estimation requires the solution of two optimization problems for each of them. In this paper an alternative approach is presented. It consists in solving a single optimization problem for the entire problem, which is that of FORM (first-order reliability analysis). It is shown that FORM solution has a valuable property, namely that it allows organizing the order statistics of the output variable along the design point vector. This property is exploited by a nonlinear projection of a large amount of standard Gaussian numbers, truncated according to the membership functions, onto a bi-dimensional space. From this mapping the samples necessary for directly solving the optimization problems are easily drawn using two curves, whose equations are derived from a similar transformation of the second-order approximation of the limit state function. A detailed structural example shows that the desired membership function of the response can be accurately estimated by the proposed method.
机译:模糊结构分析的目的是在给定输入结构的隶属函数的情况下估计输出结构变量的隶属函数,这些输入函数以所谓的α-cut级离散化。这种估计需要为每个解决两个优化问题。本文提出了一种替代方法。它包括为整个问题解决一个优化问题,即FORM(一阶可靠性分析)。结果表明,FORM解决方案具有宝贵的属性,即它允许沿着设计点向量组织输出变量的顺序统计信息。通过根据隶属函数将其截断的大量标准高斯数的非线性投影到二维空间,可以利用此属性。从该映射中,可以轻松地使用两条曲线绘制直接解决优化问题所需的样本,它们的方程式是从极限状态函数的二阶逼近的相似变换中得出的。一个详细的结构示例表明,通过所提出的方法可以准确地估计所需的响应隶属函数。

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