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    Regime-Switching Jump Diffusion Processes with Countable Regimes: Feller, Strong Feller, Irreducibility and Exponential Ergodicity

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    Date
    2021-05-01
    Author
    Kunwai, Khwanchai
    Department
    Mathematics
    Advisor(s)
    Chao Zhu
    Metadata
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    Abstract
    This work is devoted to the study of regime-switching jump diffusion processes in which the switching component has countably infinite regimes. Such processes can be used to model complex hybrid systems in which both structural changes, small fluctuations as well as big spikes coexist and are intertwined. Weak sufficient conditions for Feller and strong Feller properties and irreducibility for such processes are derived; which further lead to Foster-Lyapunov drift conditions for exponential ergodicity. Our results can be applied to stochastic differential equations with non-Lipschitz coefficients. Finally, an application to feedback control problems is presented.
    Subject
    exponential ergodicity
    Feller property
    Foster-Lyapunov function
    irreducibility
    regime-switching jump diffusion
    strong Feller property
    Permanent Link
    http://digital.library.wisc.edu/1793/92653
    Type
    dissertation
    Part of
    • UW Milwaukee Electronic Theses and Dissertations

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