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A new approach to counting measurements: Addressing the problems with ISO-11929

机译:计数测量的新方法:解决ISO-11929的问题

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摘要

We present an alternative approach to making counting measurements of radioactivity which offers probabilistic interpretations of the measurements. Unlike the approach in the current international standard (ISO-11929), our approach, which uses an assumed prior probability distribution of the true amount in the sample, is able to answer the question of interest for most users of the standard: “what is the probability distribution of the true amount in the sample, given the data?” The final interpretation of the measurement requires information not necessarily available at the measurement stage. However, we provide an analytical formula for what we term the “measurement strength” that depends only on measurement-stage count quantities. We show that, when the sources are rare, the posterior odds that the sample true value exceeds εare the measurement strength times the prior odds, independently ofε, the prior odds, and the distribution of the calibration coefficient. We recommend that the measurement lab immediately follow-up on unusually high samples using an “action threshold” on the measurement strength which is similar to the decision threshold recommended by the current standard. We further recommend that the measurement lab perform large background studies in order to characterize non constancy of background, including possible time correlation of background.
机译:我们提出了一种对放射性进行计数测量的替代方法,它提供了测量的概率解释。与当前国际标准(ISO-11929)中的方法不同,我们的方法使用了样本中真实数量的假定先验概率分布,能够回答大多数该标准用户感兴趣的问题:给定数据,样品中真实数量的概率分布?”对测量的最终解释需要在测量阶段不一定可获得的信息。但是,我们为所谓的“测量强度”提供了一个解析公式,该公式仅取决于测量阶段的计数数量。我们表明,当源极少时,样本真实值超过ε的后验几率是测量强度乘以先验几率,与ε,先验几率和校准系数的分布无关。我们建议测量实验室立即使用测量强度上的“动作阈值”来跟进异常高的样本,该阈值类似于当前标准建议的决策阈值。我们还建议测量实验室进行大量的背景研究,以表征背景的非恒定性,包括背景的可能时间相关性。

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