Reduced models for sparse grid discretizations of the multi-asset Black-Scholes equation
Author(s)
Gómez, Pablo; Bungartz, Hans-Joachim; Peherstorfer, Benjamin
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This work presents reduced models for pricing basket options with the Black-Scholes and the Heston model. Basket options lead to multi-dimensional partial differential equations (PDEs) that quickly become computationally infeasible to discretize on full tensor grids. We therefore rely on sparse grid discretizations of the PDEs, which allow us to cope with the curse of dimensionality to some extent. We then derive reduced models with proper orthogonal decomposition. Our numerical results with the Black-Scholes model show that sufficiently accurate results are achieved while gaining speedups between 80 and 160 compared to the high-fidelity sparse grid model for 2-, 3-, and 4-asset options. For the Heston model, results are presented for a single-asset option that leads to a two-dimensional pricing problem, where we achieve significant speedups with our model reduction approach based on high-fidelity sparse grid models.
Date issued
2015-05Department
Massachusetts Institute of Technology. Department of Aeronautics and AstronauticsJournal
Advances in Computational Mathematics
Publisher
Springer US
Citation
Peherstorfer, Benjamin, Pablo Gómez, and Hans-Joachim Bungartz. “Reduced Models for Sparse Grid Discretizations of the Multi-Asset Black-Scholes Equation.” Adv Comput Math 41, no. 5 (May 20, 2015): 1365–1389.
Version: Author's final manuscript
ISSN
1019-7168
1572-9044