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首页> 外文期刊>Annals of nuclear energy >Treating model defects by fitting smoothly varying model parameters: Energy dependence in nuclear data evaluation
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Treating model defects by fitting smoothly varying model parameters: Energy dependence in nuclear data evaluation

机译:通过拟合平滑变化的模型参数来处理模型缺陷:核数据评估中的能量依赖性

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摘要

The fitting of models to data is essential in nuclear data evaluation, as in many other fields of science. The models may be necessary for interpolation or extrapolation, but they are seldom perfect; there are model defects present which can result in severe biases and underestimated uncertainties.This work presents and investigates the idea to treat this problem by letting the model parameters vary smoothly with an input parameter. To be specific, the model parameters for neutron cross sections are allowed to vary with neutron energy. The parameter variation is limited by Gaussian processes, but the method should not be confused with adding a Gaussian process to the model.The performance of the method is studied using a large number of synthetic data sets, such that it is possible to quantitatively study the distribution of results compared to the underlying truth. There are imperfections in the results, but the method is seen to readily outperform fits without the energy-dependent parameters. In particular, the estimates of uncertainty and correlations are much better. Hence, the method seems to offer a promising route for future treatment of model defects, both for nuclear data and elsewhere.
机译:像在许多其他科学领域一样,将模型与数据拟合对于核数据评估至关重要。这些模型对于内插或外推可能是必需的,但是它们很少是完美的。存在一些模型缺陷,这些缺陷会导致严重的偏差和被低估的不确定性。这项工作提出并研究了通过使模型参数随输入参数平稳变化来解决此问题的想法。具体而言,允许中子横截面的模型参数随中子能量而变化。参数的变化受高斯过程的限制,但该方法不应与在模型中添加高斯过程相混淆。使用大量的综合数据集来研究该方法的性能,以便可以定量研究结果分配与基本事实相比。结果存在缺陷,但是在没有依赖能量的参数的情况下,该方法表现出优于拟合的效果。特别是,不确定性和相关性的估计要好得多。因此,该方法似乎为核数据和其他方面的模型缺陷的未来处理提供了一条有希望的途径。

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