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Development of measures to estimate truncation error in fault tree analysis

机译:故障树分析中估计截断误差的措施的发展

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The fault tree quantification uncertainty from the truncation error has been of great concern for the reliability evaluation of large fault trees in the probabilistic safety analysis (PSA) of nuclear plants. The truncation limit is used to truncate cut sets of the gates when quantifying the fault trees. This paper presents measures to estimate the probability of the truncated cut sets, that is, the amount of truncation error. The functions to calculate the measures are programmed into the new fault tree quantifier FTREX (Fault Tree Reliability Evaluation eXpert) and a Benchmark test was performed to demonstrate the efficiency of the measures. The measures presented in this study are calculated by a single quantification of the fault tree with the assigned truncation limit. As demonstrated in the Benchmark test, lower bound of truncated probability (LBTP) and approximate truncation probability (ATP) are efficient estimators of the truncated probability. The truncation limit could be determined or validated by suppressing the measures to be less than the assigned upper limit. The truncation limit should be lowered until the truncation error is less than the assigned upper limit. Thus, the measures could be used as an acceptability of the fault tree quantification results. Furthermore, the developed measures are easily implemented into the existing fault tree solvers by adding a few subroutines to the source code.
机译:截断误差引起的故障树量化不确定性一直是核电厂概率安全分析(PSA)中大型故障树可靠性评估的重要问题。截断极限用于在量化故障树时截断门的割集。本文提出了一些措施来估计被截断的割集的概率,即截断误差的数量。计算措施的功能已编入新的故障树量化器FTREX(故障树可靠性评估专家),并进行了基准测试以证明措施的有效性。本研究中提出的措施是通过对带有指定的截断极限的故障树的单个量化来计算的。如基准测试所示,截断概率的下限(LBTP)和近似截断概率(ATP)是截断概率的有效估计量。可以通过将度量限制为小于指定的上限来确定或验证截断上限。降低截断极限,直到截断误差小于分配的上限。因此,这些措施可以用作故障树量化结果的可接受性。此外,通过在源代码中添加一些子例程,可以轻松地将开发的措施实施到现有的故障树求解器中。

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