ISO 11929-2:2019
Determination of the characteristic limits (decision threshold, detection limit and limits of the coverage interval) for measurements of ionizing radiation — Fundamentals and application — Part 2: Advanced applications
Determination of the characteristic limits (decision threshold, detection limit and limits of the coverage interval) for measurements of ionizing radiation — Fundamentals and application — Part 2: Advanced applications
- Статус документа:
- Отменён
- Формат:
- Электронный (PDF)
- Количество страниц:
- 40
- Дата публикации:
- 13 февраля 2019 г.
- Издание:
- ISO IS 11929 edition 2 version 1
- ICS:
- 17.240
The ISO 11929 series specifies a procedure, in the field of ionizing radiation metrology, for the calculation of the "decision threshold", the "detection limit" and the "limits of the coverage interval" for a non-negative ionizing radiation measurand when counting measurements with preselection of time or counts are carried out. The measurand results from a gross count rate and a background count rate as well as from further quantities on the basis of a model of the evaluation. In particular, the measurand can be the net count rate as the difference of the gross count rate and the background count rate, or the net activity of a sample. It can also be influenced by calibration of the measuring system, by sample treatment and by other factors. ISO 11929 has been divided into four parts covering elementary applications in ISO 11929-1, advanced applications on the basis of the GUM Supplement 1 in this document, applications to unfolding methods in ISO 11929-3, and guidance to the application in ISO 11929-4. ISO 11929-1 covers basic applications of counting measurements frequently used in the field of ionizing radiation metrology. It is restricted to applications for which the uncertainties can be evaluated on the basis of the ISO/IEC Guide 98-3 (JCGM 2008). In Annex A of ISO 11929-1:2019 the special case of repeated counting measurements with random influences is covered, while measurements with linear analogous ratemeters are covered in Annex B of ISO 11929-1:2019. This document extends the former ISO 11929:2010 to the evaluation of measurement uncertainties according to the ISO/IEC Guide 98-3-1. It also presents some explanatory notes regarding general aspects of counting measurements and on Bayesian statistics in measurements. ISO 11929-3 deals with the evaluation of measurements using unfolding methods and counting spectrometric multi-channel measurements if evaluated by unfolding methods, in particular, for alpha- and gamma‑spectrometric measurements. Further, it provides some advice on how to deal with correlations and covariances. ISO 11929-4 gives guidance to the application of ISO 11929, summarizes shortly the general procedure and then presents a wide range of numerical examples. Information on the statistical roots of ISO 11929 and on its current development may be found elsewhere[30,31]. ISO 11929 also applies analogously to other measurements of any kind especially if a similar model of the evaluation is involved. Further practical examples can be found, for example, in ISO 18589[1], ISO 9696[2], ISO 9697[3], ISO 9698[4], ISO 10703[5], ISO 7503[6], ISO 28218[7], and ISO 11885[8]. NOTE A code system, named UncertRadio, is available for calculations according to ISO 119291 to ISO 11929-3. UncertRadio[27][28] can be downloaded for free from https://www.thuenen.de/en/fi/fields-of-activity/marine-environment/coordination-centre-of-radioactivity/uncertradio/. The download contains a setup installation file which copies all files and folders into a folder specified by the user. After installation one has to add information to the PATH of Windows as indicated by a pop‑up window during installation. English language can be chosen and extensive "help" information is available. . Another tool is the package ?metRology'[32] which is available for programming in R. It contains the two R functions ?uncert' and ?uncertMC' which perform the GUM conform uncertainty propagation, either analytically or by the Monte Carlo method, respectively. Covariances/correlations of input quantities are included. Applying these two functions within iterations for decision threshold and the detection limit calculations simplifies the programming effort significantly. It is also possible to implement this part of ISO 11929 in a spreadsheet containing a Monte Carlo add-in or into other commercial mathematics software.
Abstract
Overview
ISO 11929-2:2019 specifies advanced procedures for determining decision thresholds, detection limits, and limits of the coverage interval for non‑negative measurands in ionizing radiation counting measurements. Part 2 builds on the ISO/IEC Guide 98-3-1 (the GUM Supplement 1) to extend uncertainty evaluation from analytic GUM methods to Monte Carlo propagation of probability distributions. The standard covers measurands derived from gross and background count rates (e.g., net count rate or net activity) and accounts for influences such as calibration, sample treatment and other modelled quantities. ISO 11929-2:2019 is Bayesian‑based and intended as an advanced complement to ISO 11929-1 (basic applications) and ISO 11929-3/4.
Key topics and requirements
- Characteristic limits: formal definitions and calculation methods for the decision threshold, detection limit and coverage interval limits using probability distributions.
- Uncertainty treatment: use of ISO/IEC Guide 98-3 and ISO/IEC Guide 98-3-1 (Monte Carlo) to propagate uncertainties and PDFs rather than just standard uncertainties.
- Bayesian statistics: foundation for defining characteristic values and handling non‑random influences that are not accessible by frequentist methods.
- Counting measurement models: measurand formulation from gross/background counts, calibration factors and correction terms.
- Low-count regimes: guidance and normative annex (Annex A) for measurements with low count numbers.
- Multivariate & unfolding issues: guidance on correlations, covariances and advice for unfolding methods (detailed in ISO 11929-3).
- Documentation & reporting: recommended reporting of the primary result, its standard uncertainty, PDFs and the derived characteristic limits.
- Software support: references to calculation tools such as UncertRadio (https://www.thuenen.de/en/fi/fields-of-activity/marine-environment/coordination-centre-of-radioactivity/uncertradio/) and the R package metRology (functions ‘uncert’ and ‘uncertMC’).
Applications and users
ISO 11929-2:2019 is practical for:
- Radiological protection and environmental monitoring laboratories determining low‑level activity.
- Nuclear metrology and calibration laboratories performing counting, gamma/alpha spectrometry and net activity measurements.
- Instrument manufacturers and QA teams specifying detection performance (decision threshold and detection limit).
- Regulators and conformity assessment bodies that require rigorous uncertainty quantification for compliance decisions.
Users include metrologists, laboratory managers, health‑physics professionals, and statistical analysts who need advanced Monte Carlo‑based uncertainty propagation and Bayesian treatment of measurement data.
Related standards
- ISO 11929-1 (basic counting applications)
- ISO 11929-3 (unfolding and spectrometric multi‑channel methods)
- ISO 11929-4 (application guidance and examples)
- ISO/IEC Guide 98-3 (GUM) and ISO/IEC Guide 98-3-1 (Monte Carlo supplement)
- Practical application references: ISO 18589, ISO 9696/9697/9698 and related ISO documents.
Keywords: ISO 11929-2:2019, decision threshold, detection limit, coverage interval, measurement uncertainty, Monte Carlo, Bayesian statistics, ionizing radiation, counting measurements.
Технические детали
- Технический комитет
- ISO/TC 85/SC 2 - Radiological protection
- SKU
- ISO 11929-2:2019
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