6533b86ffe1ef96bd12cd097
RESEARCH PRODUCT
Generating Multi-Asset Arbitrage-Free Scenario Trees with Global Optimization
Stavros A. ZeniosAngelo CarolloAndrea Consigliosubject
Mathematical optimizationMatching (statistics)Basket optionBounding overwatchComputer scienceIncomplete marketsArbitrageGlobal optimizationStochastic programmingCurse of dimensionalitydescription
Simulation models of economic, financial and business risk factors are widely used to assess risks and support decision-making. Extensive literature on scenario generation methods aims at describing some underlying stochastic processes with the least number of scenarios to overcome the "curse of dimensionality". There is, however, an important requirement that is usually overlooked when one departs from the application domain of security pricing: the no-arbitrage condition. We formulate a moment matching model to generate multi-factor scenario trees satisfying no-arbitrage restrictions with a minimal number of scenarios and without any distributional assumptions. The resulting global optimization problem is quite general. However, it is non-convex and can grow significantly with the number of assets, and scenarios and we develop convex lower bounding techniques for its solution exploiting the special structure of the problem. Applications to some standard problems from the literature show that this is a robust approach for tree generation. We also use it to price a European basket option in complete and incomplete markets.
year | journal | country | edition | language |
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2013-01-01 | SSRN Electronic Journal |