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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Reliability analysis for multidisciplinary systems with the mixture of epistemic and aleatory uncertainties
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Reliability analysis for multidisciplinary systems with the mixture of epistemic and aleatory uncertainties

机译:具有认知和不确定不确定性混合的多学科系统的可靠性分析

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Epistemic and aleatory uncertain variables always exist in multidisciplinary system simultaneously and can be modeled by probability and evidence theories, respectively. The propagation of uncertainty through coupled subsystem and the strong nonlinearity of the multidisciplinary system make the reliability analysis difficult and computational cost expensive. In this paper, a novel reliability analysis procedure is proposed for multidisciplinary system with epistemic and aleatory uncertain variables. First, the probability density function of the aleatory variables is assumed piecewise uniform distribution based on Bayes method, and approximate most probability point is solved by equivalent normalization method. Then, important sampling method is used to calculate failure probability and its variance and variation coefficient. The effectiveness of the procedure is demonstrated by two numerical examples
机译:认识论和偶然的不确定变量总是同时存在于多学科系统中,并且可以分别用概率论和证据理论建模。不确定性通过耦合子系统的传播以及多学科系统的强非线性性使得可靠性分析变得困难并且计算成本昂贵。本文提出了一种具有不确定和不确定不确定变量的多学科系统可靠性分析方法。首先,基于贝叶斯方法假设了偶然变量的概率密度函数为分段均匀分布,并通过等效归一化方法求解了近似的大多数概率点。然后,采用重要的抽样方法来计算失效概率及其方差和变异系数。通过两个数值示例证明了该程序的有效性

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