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An accurate and efficient reliability-based design optimization using the second order reliability method and improved stability transformation method

机译:采用二阶可靠性方法和改进的稳定性变换方法,一种准确高效的可靠性基于可靠性的设计优化

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摘要

The first order reliability method has been extensively adopted for reliability-based design optimization (RBDO), but it shows inaccuracy in calculating the failure probability with highly nonlinear performance functions. Thus, the second order reliability method is required to evaluate the reliability accurately. However, its application for RBDO is quite challenge owing to the expensive computational cost incurred by the repeated reliability evaluation and Hessian calculation of probabilistic constraints. In this article, a new improved stability transformation method is proposed to search the most probable point efficiently, and the Hessian matrix is calculated by the symmetric rank-one update. The computational capability of the proposed method is illustrated and compared to the existing RBDO approaches through three mathematical and two engineering examples. The comparison results indicate that the proposed method is very efficient and accurate, providing an alternative tool for RBDO of engineering structures.
机译:基于可靠性的设计优化(RBDO)广泛采用了第一阶可靠性方法,但它在计算具有高度非线性性能功能的故障概率时,它显示了不准确性。因此,需要准确地评估可靠性的二阶可靠性方法。然而,由于重复的可靠性评估和Hessian计算概率约束所产生的昂贵的计算成本,其对RBDO的应用是非常挑战的。在本文中,提出了一种新的改进的稳定性转换方法来有效地搜索最可能的点,并且通过对称等级的更新计算Hessian矩阵。示出了所提出的方法的计算能力,并将其与通过三个数学和两个工程示例的现有RBDO方法进行比较。比较结果表明,该方法非常高效,准确,为工程结构的RBDO提供替代工具。

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