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A two-step methodology to apply low-discrepancy sequences in reliability assessment of structural dynamic systems

机译:一种两步方法,在结构动态系统的可靠性评估中应用低差异序列

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摘要

This study introduces various low-discrepancy sequences and then develops a new methodology for reliability assessment for structural dynamic systems. In this methodology, a two-step algorithm is first proposed, in which the most uniformly scattered point set among the low-discrepancy sequences is selected according to the centered L2-discrepancy (CL2 discrepancy) and then rearranged to minimize the generalized F-discrepancy (GF discrepancy). After that, the developed point set is incorporated into the maximum entropy method to capture the fractional moments for deriving the extreme value distribution for reliability assessment of structural dynamic systems. Numerical examples are investigated, where the results are compared with those obtained from Monte Carlo simulations, demonstrating the accuracy and efficiency of the proposed methodology.
机译:本研究介绍了各种低差异序列,然后为结构动态系统的可靠性评估开发了一种新的方法。 在该方法中,首先提出了一种两步算法,其中根据中心的L2差异(CL2差异)选择低差异序列中最均匀的散射点,然后重新排列以最小化广义F差异 (GF差异)。 之后,发达的点集被纳入最大熵方法,以捕获用于导出结构动态系统可靠性评估的极值分布的分数矩。 研究了数值例子,其中结果与从蒙特卡罗模拟中获得的结果进行了比较,展示了所提出的方法的准确性和效率。

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