方差分析在不同铁基超导体临界温度建模中的应用

A. Maksuwan, Arpapong Changjan, P. Pramuanl
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引用次数: 0

摘要

最近,铁基超导体显示出高临界温度和高上临界磁场的良好特性,这是应用于高磁场磁体的先决条件。人们对建模方法进行了广泛的研究,这种方法有助于根据结构和拓扑参数预测掺杂铁基超导体的临界温度。建模方法差异的统计意义要求研究能够可靠地区分系统方法效应和建模方法差异导致的误差。在这项工作中,我们引入了方差分析(ANOVA)来评估建模方法差异的统计意义。我们将获得的结果与支持向量机(SVM)和带自然对数转换的线性回归(LRNLT)的基于铁的建模方法差异数据进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE APPLICATION OF ANALYSIS OF VARIANCE TO DIFFERENT IRON‑BASED SUPERCONDUCTOR CRITICAL TEMPERATURE MODELING
Recently, Iron-based superconductors have shown promising properties of high critical temperature and high upper critical fields, which are prerequisites for applications in highfield magnets. Extensive research has been conducted on a modeling approach that contributes to predicting doped Iron-based superconductor critical temperature from structural and topological parameters. Statistical significance of differences in modeling approaches requires studies that can reliably distinguish between systematic approach effects and errors resulting from modeling approach variation. In this work, we introduce analysis of variance (ANOVA) to assess the statistical significance of differences in modeling approach variation. Comparisons of obtained results with Iron-based modeling approach variation data of support vector machine (SVM) and linear regression with natural logarithm transformation (LRNLT) were presented.
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