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Recent Advances in the Elicitation of Uncertainty Distributions from Experts for Multinomial Probabilities

In: Expert Judgement in Risk and Decision Analysis

Author

Listed:
  • Kevin J. Wilson

    (Newcastle University)

  • Fadlalla G. Elfadaly

    (Open University)

  • Paul H. Garthwaite

    (Open University)

  • Jeremy E. Oakley

    (University of Sheffield)

Abstract

In this chapter, we consider the problem of the elicitation and specification of an uncertainty distribution based on expert judgements, which may be a subjective prior distribution in a Bayesian analysis, for a set of probabilities which are constrained to sum to one. A typical context for this is as a prior distribution for the probabilities in a multinomial model. The Dirichlet distribution has long been advocated as a natural way to represent the uncertainty distribution over the probabilities in this context. The relatively small number of parameters allows for specification based on relatively few elicited quantities but at the expense of a very restrictive structure. We detail recent advances in elicitation for the Dirichlet distribution and recently proposed alternative approaches, which offer greater flexibility at the expense of added complexity. In order of increasing flexibility, they are the generalised Dirichlet distribution, multivariate copulas and vines. An extension of multinomial models containing covariates is discussed.

Suggested Citation

  • Kevin J. Wilson & Fadlalla G. Elfadaly & Paul H. Garthwaite & Jeremy E. Oakley, 2021. "Recent Advances in the Elicitation of Uncertainty Distributions from Experts for Multinomial Probabilities," International Series in Operations Research & Management Science, in: Anca M. Hanea & Gabriela F. Nane & Tim Bedford & Simon French (ed.), Expert Judgement in Risk and Decision Analysis, chapter 0, pages 19-51, Springer.
  • Handle: RePEc:spr:isochp:978-3-030-46474-5_2
    DOI: 10.1007/978-3-030-46474-5_2
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    Cited by:

    1. Perepolkin, Dmytro & Lindsröm, Erik & Sahlin, Ullrika, 2023. "Quantile-parameterized distributions for expert knowledge elicitation," OSF Preprints tq3an, Center for Open Science.

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