Bayesian Inference for Source Reconstruction: A Real-World Application.

Int Sch Res Notices

Health Canada, Radiation Protection Bureau, 775 Brookfield Road, A.L. 6302A, Ottawa, ON, Canada K1A 1C1.

Published: July 2016

AI Article Synopsis

  • The paper investigates a Bayesian approach to pinpoint the location and emission rate of Xenon-133 from the Chalk River Laboratories by analyzing a limited number of concentration measurements from three monitoring stations.
  • It employs a Markov chain Monte Carlo method using a unique multiple-try differential evolution adaptive Metropolis algorithm to enhance the efficiency of parameter sampling.
  • The study identifies challenges in accurately specifying model errors and evaluates two measurement models to determine their effectiveness in recovering source parameters, comparing their accuracy and precision.

Article Abstract

This paper applies a Bayesian probabilistic inferential methodology for the reconstruction of the location and emission rate from an actual contaminant source (emission from the Chalk River Laboratories medical isotope production facility) using a small number of activity concentration measurements of a noble gas (Xenon-133) obtained from three stations that form part of the International Monitoring System radionuclide network. The sampling of the resulting posterior distribution of the source parameters is undertaken using a very efficient Markov chain Monte Carlo technique that utilizes a multiple-try differential evolution adaptive Metropolis algorithm with an archive of past states. It is shown that the principal difficulty in the reconstruction lay in the correct specification of the model errors (both scale and structure) for use in the Bayesian inferential methodology. In this context, two different measurement models for incorporation of the model error of the predicted concentrations are considered. The performance of both of these measurement models with respect to their accuracy and precision in the recovery of the source parameters is compared and contrasted.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4897316PMC
http://dx.doi.org/10.1155/2014/507634DOI Listing

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