arXiv · math/0612523
Multi-step Richardson-Romberg Extrapolation: Remarks on Variance Control and complexity
Abstract
We propose a multi-step Richardson-Romberg extrapolation method for the computation of expectations $E f(X_{_T})$ of a diffusion $(X_t)_{t\in [0,T]}$ when the weak time discretization error induced by the Euler scheme admits an expansion at an order $R\ge 2$. The complexity of the estimator grows as $R^2$ (instead of $2^R$) and its variance is asymptotically controlled by considering some consistent Brownian increments in the underlying Euler schemes. Some Monte carlo simulations carried with path-dependent options (lookback, barriers) which support the conjecture that their weak time discretization error also admits an expansion (in a different scale). Then an appropriate Richardson-Romberg extrapolation seems to outperform the Euler scheme with Brownian bridge.
Explore related subjects
Keep this discovery
Gilles Pagès. 2007-12-17. Multi-step Richardson-Romberg Extrapolation: Remarks on Variance Control and complexity. https://doi.org/10.1515/mcma.2007.003
Cite the original work for its findings. Save a collection to share your selection of sources.