Calibration to American options: numerical investigation of the de-Americanization method

O. Burkovska, M. Gass, K. Glau, M. Mahlstedt, W. Schoutens, B. Wohlmuth

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

American options are the reference instruments for the model calibration of a large and important class of single stocks. For this task, a fast and accurate pricing algorithm is indispensable. The literature mainly discusses pricing methods for American options that are based on Monte Carlo, tree and partial differential equation methods. We present an alternative approach that has become popular under the name de-Americanization in the financial industry. The method is easy to implement and enjoys fast run-times (compared to a direct calibration to American options). Since it is based on ad hoc simplifications, however, theoretical results guaranteeing reliability are not available. To quantify the resulting methodological risk, we empirically test the performance of the de-Americanization method for calibration. We classify the scenarios in which de-Americanization performs very well. However, we also identify the cases where de-Americanization oversimplifies and can result in large errors.

Original languageEnglish
Pages (from-to)1091-1113
Number of pages23
JournalQuantitative Finance
Volume18
Issue number7
DOIs
StatePublished - Jul 3 2018
Externally publishedYes

Funding

This work was partly supported by: DFG [grant number WO671/11-1]; International Research Training Group [IGDK1754], funded by the German Research Foundation (DFG) and the Austrian research fund (FWF); KPMG Center of Excellence in Risk Management.

FundersFunder number
Austrian research fund
International Research Training GroupIGDK1754
KPMG Center of Excellence in Risk Management
Deutsche ForschungsgemeinschaftWO671/11-1
Austrian Science Fund

    Keywords

    • American options
    • Binomial tree model
    • C51
    • C63
    • CEV model
    • Heston model
    • Lévy models
    • Model calibration
    • Model reduction
    • Variational inequalities

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