Generalized Risk-Sensitive Optimal Control and Hamilton-Jacobi-Bellman Equation

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초록

In this article, we consider the generalized risk-sensitive optimal control problem, where the objective functional is defined by the controlled backward stochastic differential equation (BSDE) with quadratic growth coefficient. We extend the earlier results of the risk-sensitive optimal control problem to the case of the objective functional given by the controlled BSDE. Note that the risk-neutral stochastic optimal control problem corresponds to the BSDE objective functional with linear growth coefficient, which can be viewed as a special case of the article. We obtain the generalized risk-sensitive dynamic programming principle for the value function via the backward semigroup associated with the BSDE. Then we show that the corresponding value function is a viscosity solution to the Hamilton-Jacobi-Bellman equation. Under an additional parameter condition, the viscosity solution is unique, which implies that the solution characterizes the value function. We apply the theoretical results to the risk-sensitive European option pricing problem.

키워드

Optimal controlViscosityIndexesDifferential equationsStochastic processesDynamic programmingEuropeBackward stochastic differential equations (BSDE)Hamilton&#8211Jacobi&#8211Bellman (HJB) equationsrisk-sensitive optimal controlviscosity solutionsSTOCHASTIC DIFFERENTIAL-EQUATIONSFULLY COUPLED FBSDESVISCOSITY SOLUTIONSBSDESGAMESUNIQUENESSSUM
제목
Generalized Risk-Sensitive Optimal Control and Hamilton-Jacobi-Bellman Equation
저자
Moon, Jun
DOI
10.1109/TAC.2020.3004717
발행일
2021-05
유형
Article
저널명
IEEE Transactions on Automatic Control
66
5
페이지
2319 ~ 2325