Pricing path-dependent Bermudan options using Wiener chaos expansion: an embarrassingly parallel approach
Abstract
In this work, we propose a new policy iteration algorithm for pricing Bermudan options when the payoff process cannot be written as a function of a lifted Markov process. Our approach is based on a modification of the well-known Longstaff Schwartz algorithm, in which we basically replace the standard least square regression by a Wiener chaos expansion. Not only does it allow us to deal with a non Markovian setting, but it also breaks the bottleneck induced by the least square regression as the coefficients of the chaos expansion are given by scalar products on the L^2 space and can therefore be approximated by independent Monte Carlo computations. This key feature enables us to provide an embarrassingly parallel algorithm.
Keywords
Cite
@article{arxiv.1901.05672,
title = {Pricing path-dependent Bermudan options using Wiener chaos expansion: an embarrassingly parallel approach},
author = {Jérôme Lelong},
journal= {arXiv preprint arXiv:1901.05672},
year = {2020}
}
Comments
The Journal of Computational Finance, Incisive Media, In press