Title
Implementation And Analysis Of An Adaptive Multilevel Monte Carlo Algorithm
Abstract
We present an adaptive multilevel Monte Carlo (MLMC) method for weak approximations of solutions to Ito stochastic differential equations (SDE). The work [11] proposed and analyzed an MLMC method based on a hierarchy of uniform time discretizations and control variates to reduce the computational effort required by a single level Euler-Maruyama Monte Carlo method from O (TOL-3) to O (TOL-2 log(TOL-1)(2)) for a mean square error of O (TOL2). Later, the work [17] presented an MLMC method using a hierarchy of adaptively refined, non-uniform time discretizations, and, as such, it may be considered a generalization of the uniform time discretization MLMC method. This work improves the adaptive MLMC algorithms presented in [17] and it also provides mathematical analysis of the improved algorithms. In particular, we show that under some assumptions our adaptive MLMC algorithms are asymptotically accurate and essentially have the correct complexity but with improved control of the complexity constant factor in the asymptotic analysis. Numerical tests include one case with singular drift and one with stopped diffusion, where the complexity of a uniform single level method is O (TOL-4). For both these cases the results confirm the theory, exhibiting savings in the computational cost for achieving the accuracy O (TOL) from O (TOL-3) for the adaptive single level algorithm to essentially O (TOL-2 log(TOL-1)(2)) for the adaptive MLMC algorithm.
Year
DOI
Venue
2014
10.1515/mcma-2013-0014
MONTE CARLO METHODS AND APPLICATIONS
Keywords
Field
DocType
Computational finance, Monte Carlo, multilevel, adaptivity, weak approximation, error control, Euler-Maruyama method, a posteriori error estimates, backward dual functions, adjoints
Numerical tests,Monte Carlo method,Mathematical optimization,Monte Carlo algorithm,Asymptotic analysis,Mathematics,Euler–Maruyama method
Journal
Volume
Issue
ISSN
20
1
0929-9629
Citations 
PageRank 
References 
9
0.95
7
Authors
4
Name
Order
Citations
PageRank
Håkon Hoel1214.02
Erik von Schwerin2383.13
Anders Szepessy3346.70
Raul447754.12