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Treatment of uncorrected measurement bias in uncertainty estimation for chemical measurements

机译:化学测量不确定度估计中未校正的测量偏差的处理

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摘要

Consistent treatment of measurement bias, including the question of whether or not to correct for bias, is essential for the comparability of measurement results. The case for correcting for bias is discussed, and it is shown that instances in which bias is known or suspected, but in which a specific correction cannot be justified, are comparatively common. The ISO Guide to the Expression of Uncertainty in Measurement does not provide well for this situation. It is concluded that there is a need for guidance on handling cases of uncorrected bias. Several different published approaches to the treatment of uncorrected bias and its uncertainty are critically reviewed with regard to coverage probability and simplicity of execution. On the basis of current studies, and taking into account testing laboratory needs for a simple and consistent approach with a symmetric uncertainty interval, we conclude that for most cases with large degrees of freedom, linear addition of a bias term adjusted for exact coverage (“Ue”) as described by Synek is to be preferred. This approach does, however, become more complex if degrees of freedom are low. For modest bias and low degrees of freedom, summation of bias, bias uncertainty and observed value uncertainty in quadrature (“RSSu”) provides a similar interval and is simpler to adapt to reduced degrees of freedom, at the cost of a more restricted range of application if accurate coverage is desired.
机译:对测量偏差的一致处理,包括是否校正偏差的问题,对于测量结果的可比性至关重要。讨论了用于校正偏差的情况,并且示出了其中已知或怀疑偏差但不能证明具体校正合理的情况的情况比较普遍。 ISO测量不确定度表示指南不能很好地解决这种情况。结论是,需要对处理未纠正偏见的情况提供指导。关于覆盖率和执行的简便性,对几种未发表的偏倚及其不确定性的治疗方法进行了严格审查。在当前研究的基础上,并考虑到测试实验室对具有对称不确定性区间的简单且一致的方法的需求,我们得出结论,对于大多数自由度较大的情况,线性添加根据精确覆盖范围调整的偏差项(“ Synek描述的Ue ”)是首选。但是,如果自由度较低,则此方法的确会变得更加复杂。对于适度的偏差和较低的自由度,偏差,偏差不确定度和观测值不确定度的总和(“ RSSu”)提供了相似的间隔,并且更容易适应降低的自由度,但代价是限制范围更大。如果需要准确的覆盖范围,请使用。

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