Bayesian non-parametric inference for -coalescents: Posterior consistency and a parametric method

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Abstract

We investigate Bayesian non-parametric inference of the -measure of -coalescent processes with recurrent mutation, parametrised by probability measures on the unit interval. We give verifiable criteria on the prior for posterior consistency when observations form a time series, and prove that any non-trivial prior is inconsistent when all observations are contemporaneous. We then show that the likelihood given a data set of size n ? N is constant across -measures whose leading n - 2 moments agree, and focus on inferring truncated sequences of moments. We provide a large class of functionals which can be extremised using finite computation given a credible region of posterior truncated moment sequences, and a pseudo-marginal Metropolis-Hastings algorithm for sampling the posterior. Finally, we compare the efficiency of the exact and noisy pseudo-marginal algorithms with and without delayed acceptance acceleration using a simulation study.

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Koskela, J., Jenkins, P. A., & Spanò, D. (2018). Bayesian non-parametric inference for -coalescents: Posterior consistency and a parametric method. Bernoulli, 24(3), 2122–2153. https://doi.org/10.3150/16-BEJ923

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