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A hybrid self-adaptive conjugate first order reliability method for robust structural reliability analysis

机译:鲁棒结构可靠性分析的混合自适应共轭一阶可靠性方法

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摘要

The traditional First Order Reliability Method (FORM) using steepest descent search direction may yield unstable solutions due to periodic nature and chaos for reliability analysis problems involving highly nonlinear performance functions. A conjugate search direction approach is attempted in the present study to overcome such problem of the FORM for Most Probable Point (MPP) search. Two iterative FORM schemes are investigated based on conjugate descent direction using self-adaptive conjugate (SAC) and hybrid self- adaptive conjugate (HSAC) search directions for estimating reliability index. The SAC is proposed using Fletcher and Reeves (FR) method and an adaptive conjugate scalar factor to improve the efficiency of the FR method for reliability analysis of highly nonlinear performance function. The HSAC is adaptively computed using FR and SAC methods to improve the robustness and efficiency of the FORM formula. The effectiveness of the proposed SAC and HSAC approaches are studied compare to the traditional FORM algorithms through several numerical examples. The proposed methods based on conjugate search direction are found to be more efficient and robust than the usual FORM algorithms.
机译:传统的使用最速下降搜索方向的一阶可靠性方法(FORM)可能会由于周期性和对涉及高度非线性性能函数的可靠性分析问题的混乱而产生不稳定的解。在本研究中尝试使用共轭搜索方向方法来克服这种形式的最可能点(MPP)搜索问题。基于共轭下降方向,使用自适应共轭(SAC)和混合自适应共轭(HSAC)搜索方向来研究两种迭代FORM方案,以评估可靠性指标。提出了利用Fletcher and Reeves(FR)方法和自适应共轭标量因子的SAC,以提高FR方法对高度非线性性能函数的可靠性分析的效率。使用FR和SAC方法自适应地计算HSAC,以提高FORM公式的鲁棒性和效率。通过几个数值算例,与传统的FORM算法比较,研究了所提出的SAC和HSAC方法的有效性。发现基于共轭搜索方向的建议方法比常规的FORM算法更有效,更鲁棒。

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