Large deviation principles for stochastic dynamical systems with a fractional Brownian noise
Probability
2020-06-18 v2
Abstract
We study small noise large deviation asymptotics for stochastic differential equations with a multiplicative noise given as a fractional Brownian motion with Hurst parameter . The solutions of the stochastic differential equations are defined pathwise under appropriate conditions on the coefficients. The ingredients in the proof of the large deviation principle, which include a variational representation for nonnegative functionals of fractional Brownian motions and a general sufficient condition for a LDP for a collection of functionals of a fractional Brownian motions, have a broader applicability than the model considered here.
Cite
@article{arxiv.2006.07683,
title = {Large deviation principles for stochastic dynamical systems with a fractional Brownian noise},
author = {Amarjit Budhiraja and Xiaoming Song},
journal= {arXiv preprint arXiv:2006.07683},
year = {2020}
}