Explicit numerical approximations for mckean-vlasov neutral stochastic differential delay equations

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Abstract

This paper studies the numerical methods to approximate the solu-tions for a sort of McKean-Vlasov neutral stochastic dierential delay equations (MV-NSDDEs) that the growth of the drift coecients is super-linear. First, we obtain that the solution of MV-NSDDE exists and is unique. Then, we use a stochastic particle method, which is on the basis of the results about the propa-gation of chaos for a stochastic particle system, to deal with the approximation of the law. Furthermore, we construct the tamed Euler-Maruyama numerical scheme with respect to the corresponding particle system and obtain the rate of convergence. Combining propagation of chaos and the convergence rate of the numerical solution to the particle system, we get the convergence error between the numerical solution and exact solution of the original MV-NSDDE in the stepsize and number of particles.

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Cui, Y., Li, X., Liu, Y., & Yuan, C. (2023). Explicit numerical approximations for mckean-vlasov neutral stochastic differential delay equations. Discrete and Continuous Dynamical Systems - Series S, 16(5), 1111–1141. https://doi.org/10.3934/dcdss.2023055

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