准随机r-roberts序列的多工厂实验齐次计划在旋涡式结构镜中进行代理建模

IF 0.3 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
V. Galchenko, M. D. Koshevoy, R. Trembovetskaya
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引用次数: 1

摘要

上下文。本文致力于基于准随机递归Roberts序列的多因子实验计划的创建。本研究的对象是计算机辅助实验设计方案的生成过程。本文的目的是创建多因素,即六因素和七因素,低差异的均匀实验计划,研究它们的投影特性,并以涡流结构镜中的代理建模为例说明它们的应用。方法。采用单位超立方体均匀填充参考点的迭代方法构建多维实验方案。它是在拟随机非参数加性递推Roberts r序列的基础上实现的,该序列是在广义Fibonacci序列的基础上得到的。计划完美的标准是根据坐标旋转和因素的重新标记和排序方面的差异不变来评估均匀性,并定量地表征生成的分布与理想均匀的偏差。结果。六因素和七因素计算机统一的编目实验计划,其特点是低差异和足够高质量的投影特性。先前在作者的研究中已经证明,随着平面点的增加,这些实验平面特征在多维因子空间中保持的趋势得到了证实。通过对所有二维投影的散射矩阵进行可视化分析,以及通过构成该计划的向量集的非均质性的定量指标(即中心差和循环差)来评估所创建的实验计划的质量。以建立替代模型解决涡流结构镜中电物理参数剖面识别问题的初始阶段为例,表明了所建平面的应用具有一定的特点,特别是从单位超立方体平面过渡到超平行六面体形式的实因子空间平面,但不明显影响其点分布均匀性的特点。结论。第一次解决了基于Roberts r序列的低中心差率和循环差率的六因子和七因子均匀实验方案的问题。研究了所创建的实验平面在不同点数下的投影特性。改进了考虑涡流结构镜特性的多维实验计算机计划构建方法。介绍了六维实验方案在涡流结构镜模拟中的应用。研究结果可以用任何已知的近似方法来建立物理过程的替代数学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HOMOGENEOUS PLANS OF MULTI-FACTORY EXPERIMENTS ON QUASI-RANDOM R-ROBERTS SEQUENCES FOR SURROGATE MODELING IN A VORTEX STYLE STRUCTUROSCOPY
Context. The article is devoted to the creation of multifactorial experimental plans based on quasi-random recursive Roberts Rsequences. The object of the research is the process of creating computer-aided experimental design plans. The aim of the article is to create multifactorial, namely six- and seven-factor, uniform plans of experiments with low discrepancies, study of their projection properties and demonstrate their use on the example of surrogate modeling in eddy current structuroscopy. Method. An iterative method of unit hypercube even filling with reference points was used for constructing multidimensional experimental plans. It provides acceptable indicators of homogeneity and is realized on the basis of quasi-random nonparametric additive recursive Roberts R-sequences using irrational numbers, which, in turn, are obtained on the basis of the generalized Fibonacci sequence. The criterion for plans perfection is the assessment of homogeneity in terms of differences invariant with respect to the rotation of coordinates and re-marking and ordering of factors and which quantitatively characterize the deviation of the generated distribution from the ideal uniform. Results. Six- and seven-factor computer uniform experimental plans have been created for cataloging, which are characterized by low discrepancies and sufficiently high-quality projection properties. The tendency, which had been previously proved in the authors' research, for preserving these experimental plans characteristics in multidimensional factor spaces, which is observed with increasing number of plan points, has been confirmed. The evaluation of the quality of the created experimental plans is carried out both by visual analysis of the scattering matrix of all two-dimensional projections and by quantitative indicators of heterogeneity of the set of vectors that form the plan, namely centered and cyclic discrepancies. The example of the initial stage of creating a surrogate model to solve the problem of identifying profiles of electrophysical parameters in eddy current structuroscopy shows certain features of the application for created plans, in particular the transition from the plan for a unit hypercube to the plan in real factor space in the form of a hyperparallelepiped, which does not significantly affect its characteristics of homogeneity of the distribution of points. Conclusions. For the first time, the problem of creating six- and seven-factor uniform plans of experiments with low rates of centered and cyclic discrepancies based on R-sequences of Roberts was solved. The projection properties of the created experimental plans for different number of points were investigated. The method of constructing multidimensional computer plans of experiments taking into account the peculiarities of eddy current structuroscopy was improved. The use of six-dimensional experimental plans on the example of surrogate modeling in eddy current structuroscopy was demonstrated. The results of the study can be used in the construction of surrogate mathematical models of physical processes by any known methods of approximation.
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
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