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Geotechnical reliability analysis with limited data: Consideration of model selection uncertainty

机译:有限数据的岩土工程可靠性分析:考虑模型选择的不确定性

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The limited amount of data available in geotechnical practice makes it difficult to identify a unique probability model for the joint distribution of uncertain variables. Yet, the calculated failure probability can be sensitive to the probability model used, even if different models are calibrated based on the same data. The model selection uncertainty is a poorly understood area of research in current geotechnical practice. In this study, we show how to construct candidate probability models based upon the copula theory to more realistically model the soil data with explicit consideration of the possible non-linear dependence relationship between random variables. The authors used a Bayesian method to quantify the model selection uncertainty and to compare the validity of the candidate models. A model averaging method that combines predictions from competing models was then developed to deal with the situation when the effect of model selection uncertainty cannot be neglected. Averaging over the reliability index seems more plausible than averaging over the failure probability in geotechnical reliability analyses. To reduce the computational work, models with significantly less model probabilities can be removed from the model averaging process without an obvious effect on the prediction accuracy.
机译:在岩土实践中可用的数据量有限,因此很难为不确定变量的联合分布确定唯一的概率模型。然而,即使基于相同数据校准了不同的模型,所计算出的故障概率也可能对所使用的概率模型敏感。在当前的岩土实践中,模型选择的不确定性是一个鲜为人知的领域。在这项研究中,我们展示了如何基于copula理论构造候选概率模型,以更实际地对土壤数据进行建模,同时明确考虑随机变量之间可能存在的非线性相关性。作者使用贝叶斯方法来量化模型选择的不确定性,并比较候选模型的有效性。然后,开发了一种将来自竞争模型的预测相结合的模型平均方法,以处理无法忽略模型选择不确定性影响的情况。在岩土工程可靠性分析中,与对破坏概率进行平均相比,对可靠性指标进行平均似乎更合理。为了减少计算工作,可以从模型平均过程中删除模型概率明显较小的模型,而不会对预测准确性产生明显影响。

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