A central limit theorem for Latin hypercube sampling with dependence and application to exotic basket option pricing
Abstract
We consider the problem of estimating , where denotes a random vector with uniformly distributed marginals. In general, Latin hypercube sampling (LHS) is a powerful tool for solving this kind of high-dimensional numerical integration problem. In the case of dependent components of the random vector one can achieve more accurate results by using Latin hypercube sampling with dependence (LHSD). We state a central limit theorem for the -dimensional LHSD estimator, by this means generalising a result of Packham and Schmidt. Furthermore we give conditions on the function and the distribution of under which a reduction of variance can be achieved. Finally we compare the effectiveness of Monte Carlo and LHSD estimators numerically in exotic basket option pricing problems.
Cite
@article{arxiv.1311.4698,
title = {A central limit theorem for Latin hypercube sampling with dependence and application to exotic basket option pricing},
author = {Christoph Aistleitner and Markus Hofer and Robert Tichy},
journal= {arXiv preprint arXiv:1311.4698},
year = {2013}
}