Baleanu, D.Alzabut, J.Vignesh, D.Abbas, S.Selvam, A. G. M.02.02. Matematik02. Fen-Edebiyat Fakültesi01. Çankaya Üniversitesi2022-10-112025-09-182022-10-112025-09-182020Selvam, A.G.M...et al. (2020). "On Hyers–Ulam Mittag-Leffler stability of discrete fractional Duffing equation with application on inverted pendulum", Advances in Difference Equations, Vol. 2020, No. 1.1687-1847https://doi.org/10.1186/s13662-020-02920-6https://hdl.handle.net/123456789/12604D, Vignesh/0000-0002-9942-4035; Abbas, Syed/0000-0001-5694-2011; Alzabut, Prof. Dr. Jehad/0000-0002-5262-1138A human being standing upright with his feet as the pivot is the most popular example of the stabilized inverted pendulum. Achieving stability of the inverted pendulum has become common challenge for engineers. In this paper, we consider an initial value discrete fractional Duffing equation with forcing term. We establish the existence, Hyers-Ulam stability, and Hyers-Ulam Mittag-Leffler stability of solutions for the equation. We consider the inverted pendulum modeled by Duffing equation as an example. The values are tabulated and simulated to show the consistency with theoretical findings.eninfo:eu-repo/semantics/openAccessFractional Duffing EquationMittag-Leffler FunctionHyers-Ulam StabilityInverted Pendulum26A3339A30On Hyers-Ulam Mittag-Leffler Stability of Discrete Fractional Duffing Equation With Application on Inverted PendulumOn Hyers–Ulam Mittag-Leffler stability of discrete fractional Duffing equation with application on inverted pendulumArticle10.1186/s13662-020-02920-62-s2.0-85090025799