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Nonparametric Bayesian posterior contraction rates for discretely observed scalar diffusions

Statistics Theory 2020-05-26 v2 Probability Methodology Statistics Theory

Abstract

We consider nonparametric Bayesian inference in a reflected diffusion model dXt=b(Xt)dt+σ(Xt)dWt,dX_t = b (X_t)dt + \sigma(X_t) dW_t, with discretely sampled observations X0,XΔ,,XnΔX_0, X_\Delta, \dots, X_{n\Delta}. We analyse the nonlinear inverse problem corresponding to the `low frequency sampling' regime where Δ>0\Delta>0 is fixed and nn \to \infty. A general theorem is proved that gives conditions for prior distributions Π\Pi on the diffusion coefficient σ\sigma and the drift function bb that ensure minimax optimal contraction rates of the posterior distribution over H\"older-Sobolev smoothness classes. These conditions are verified for natural examples of nonparametric random wavelet series priors. For the proofs we derive new concentration inequalities for empirical processes arising from discretely observed diffusions that are of independent interest.

Keywords

Cite

@article{arxiv.1510.05526,
  title  = {Nonparametric Bayesian posterior contraction rates for discretely observed scalar diffusions},
  author = {Richard Nickl and Jakob Söhl},
  journal= {arXiv preprint arXiv:1510.05526},
  year   = {2020}
}

Comments

44 pages

R2 v1 2026-06-22T11:23:43.767Z