• Title of article

    Mean-square Stability and Convergence of Compensated Split-Step theta-method for Nonlinear Jump Diffusion Systems

  • Author/Authors

    Soheili, Ali R. Department of applied mathematics - Ferdowsi university of Mashhad - Mashhad, Iran , Taherinasab, Yasser Department of applied mathematics - Ferdowsi university of Mashhad - Mashhad, Iran , Amini, M Department of Statistics - Ferdowsi University of Mashhad - Mashhad, Iran

  • Pages
    24
  • From page
    103
  • To page
    126
  • Abstract
    In this paper, we analyze the strong convergence and stability of the Compensated Splite-step $theta$ (CSS$theta$) and Forward-Backward Euler-Maruyama (FBEM) methods for Numerical solutions of Stochastic Differential Equations with jumps (SDEwJs),where $sqrt{2}-1leqthetaleq 1$. The drift term $f$ has a one-sided Lipschitz condition, the diffusion term $g$ and jump term $h$ satisfy global Lipschitz condition. Furthermore, we discuss about the stability of SDEwJs with constant coefficients and present new useful relations between their coefficients. Finally we examine the correctness and efficiency of theorems with some examples.In this paper, we analyze the strong convergence and stability of the Compensated Splite-step $theta$ (CSS$theta$) and Forward-Backward Euler-Maruyama (FBEM) methods for Numerical solutions of Stochastic Differential Equations with jumps (SDEwJs),where $sqrt{2}-1leqthetaleq 1$. The drift term $f$ has a one-sided Lipschitz condition, the diffusion term $g$ and jump term $h$ satisfy global Lipschitz condition. Furthermore, we discuss about the stability of SDEwJs with constant coefficients and present new useful relations between their coefficients. Finally we examine the correctness and efficiency of theorems with some examples.
  • Keywords
    mean-square stability , Nonlinear stochastic differential equations , Poisson jump , compensated split-step ‌$theta‌$ method , one-sided Lipschitz condition , forward-backward Euler-Maruyama method
  • Journal title
    Journal of Mathematics and Modeling in Finance
  • Serial Year
    2021
  • Record number

    2702856