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Components of a Variance Model for the Analysis of Repeated Measurements in Fixed-Point Comparisons

机译:定点比较分析反复测量的方差模型的组件

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Experimental design is a statistical tool concerned with the planning of experiments to obtain the maximum amount of information from the available resources. This tool may be applied to metrology, especially for the analysis of a large number of repeated measurements (replicates) of short-term repeatability and the medium-term and long-term reproducibilities, enabling the inclusion of these "time-dependent sources of variability" in the uncertainty budget. The realization of the International Temperature Scale of 1990 (ITS-90) scale requires that laboratories usually have more than one cell for each fixed point, for comparison on a regular basis. The calculation of the uncertainty of such comparisons is considered here, taking into account these time-dependent sources of variability. These components of the uncertainty evaluated by a Type A method are obtained by the statistical analysis of the experimental results using the components of a variance model for designs consisting of nested or hierarchical sequences of measurements, as foreseen by the mainstream GUM. An application example of a balanced nested structure in the comparison of two fixed-point cells is presented.
机译:实验设计是一种统计工具,与实验规划有关,以获得可用资源的最大信息量。该工具可以应用于计量学,特别是对于短期重复性和中期和长期再现性的大量重复测量(重复)的分析,使得能够包含这些“时间依赖性可变性来源“在不确定性预算中。实现1990年的国际温度等级(其-90)规模要求实验室通常具有每个固定点的多个单元,以定期比较。这里考虑到这些时间依赖性可变性来源来计算这种比较的不确定性的计算。通过一种方法评估的这些组分通过使用嵌套或分层测量序列组成的设计的方差模型的组分来获得实验结果的统计分析,如主流胶的预见。呈现了两个定点单元的比较中平衡嵌套结构的应用示例。

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