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On the equivalence of generalized least-squares approaches to the evaluation of measurement comparisons

机译:关于广义最小二乘法的等价方法

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摘要

Analysis of CIPM international comparisons is increasingly being carried out using a model-based approach that leads naturally to a generalized least-squares (GLS) solution. While this method offers the advantages of being easier to audit and having general applicability to any form of comparison protocol, there is a lack of consensus over aspects of its implementation. Two significant results are presented that show the equivalence of three differing approaches discussed by or applied in comparisons run by Consultative Committees of the CIPM. Both results depend on a mathematical condition equivalent to the requirement that any two artefacts in the comparison are linked through a sequence of measurements of overlapping pairs of artefacts. The first result is that a GLS estimator excluding all sources of error common to all measurements of a participant is equal to the GLS estimator incorporating all sources of error, including those associated with any bias in the standards or procedures of the measuring laboratory. The second result identifies the component of uncertainty in the estimate of bias that arises from possible systematic effects in the participants' measurement standards and procedures. The expression so obtained is a generalization of an expression previously published for a one-artefact comparison with no inter-participant correlations, to one for a comparison comprising any number of repeat measurements of multiple artefacts and allowing for inter-laboratory correlations.
机译:CIPM国际比较的分析越来越多地使用基于模型的方法来进行,这种方法自然可以得出广义最小二乘(GLS)解决方案。尽管此方法的优点是易于审核,并且对任何形式的比较协议都具有普遍适用性,但在其实施方面缺乏共识。提出了两个重要结果,表明CIPM咨询委员会讨论或比较中使用的三种不同方法的等效性。这两个结果均取决于一个数学条件,该条件等同于比较中的任何两个人工制品都通过一系列重叠的人工制品测量序列链接在一​​起的要求。第一个结果是,GLS估计器排除了参与者所有测量通用的所有误差源,等于包含所有误差源的GLS估计器,包括与测量实验室标准或程序中的任何偏差相关的误差源。第二个结果确定了由参与者的测量标准和程序中可能的系统性影响引起的偏差估计中的不确定性。如此获得的表达是先前公布的用于一种无人工参与的相互比较的一种人工物比较的表达的概括,以及一种用于包含多个人工制品的任意多次重复测量并允许实验室间相关的比较的一般化表达。

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