Article ID Journal Published Year Pages File Type
5776261 Journal of Computational and Applied Mathematics 2017 34 Pages PDF
Abstract
We consider an Euler-Maruyama type approximation method for a stochastic differential equation (SDE) with a non-regular drift and regular diffusion coefficient. The method regularizes the drift coefficient within a certain class of functions and then the Euler-Maruyama scheme for the regularized scheme is used as an approximation. This methodology gives two errors. The first one is the error of regularization of the drift coefficient within a given class of parametrized functions. The second one is the error of the regularized Euler-Maruyama scheme. After an optimization procedure with respect to the parameters we obtain various rates, which improve other known results.
Related Topics
Physical Sciences and Engineering Mathematics Applied Mathematics
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