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A novel first-order reliability method based on performance measure approach for highly nonlinear problems

机译:一种基于高度非线性问题性能测量方法的新型第一阶可靠性方法

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摘要

The first-order reliability method (FORM) is widely used in structural reliability analysis for its simplicity and efficiency. It can be solved by gradient-based algorithms, on which the nonlinear degree of performance functions may have a great influence. On the other hand, evolutionary algorithms could achieve convergence solutions even for highly nonlinear performance function, usually with expensive computational cost. To overcome their drawbacks, we propose a new reliability analysis method called PMA-IACC to search the most probable failure point (MPP). As the inverse reliability analysis and reliability analysis are reversible each other, the performance measure approach (PMA) of the inverse reliability analysis could be used for the reliability analysis based on the multi-objective optimization theory. To enhance the efficiency and robustness of the inverse reliability, the improved adaptive chaos control (IACC) method is proposed and then it is integrated into the PMA reliability analysis strategy. Five illustrative examples, including three two-dimensional problems and two multi-dimensional problems, demonstrate the outstanding efficiency and robustness of the PMA-IACC over other prevalent approaches.
机译:一阶可靠性方法(形式)广泛用于结构可靠性分析,以实现其简单性和效率。它可以通过基于梯度的算法来解决,其中性能函数的非线性程度可能具有很大的影响。另一方面,即使对于高度非线性性能函数,进化算法也可以实现收敛解决方案,通常具有昂贵的计算成本。为了克服他们的缺点,我们提出了一种新的可靠性分析方法,称为PMA-IACC以搜索最可能的故障点(MPP)。随着逆可靠性分析和可靠性分析彼此可逆,逆可靠性分析的性能测量方法(PMA)可用于基于多目标优化理论的可靠性分析。为了提高逆可靠性的效率和稳健性,提出了改进的自适应混沌控制(IACC)方法,然后将其集成到PMA可靠性分析策略中。五个说明性示例,包括三个二维问题和两个多维问题,证明了PMA-IACC在其他普遍普遍的方法中的出色效率和稳健性。

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