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Dynamical analysis and encryption key-distribution application of new q-deformed reduced Lorenz system

  • A. Elsonbaty [1] ; Sanaa M. Salman [2] ; A. Aldurayhim [5] ; N. F. Abdo [1] ; E. A. Hagras [3] ; A. A. Elsadany [4]
    1. [1] Mansoura University

      Mansoura University

      Egipto

    2. [2] Alexandria University

      Alexandria University

      Egipto

    3. [3] Delta University for Science and Technology

      Delta University for Science and Technology

      Egipto

    4. [4] Suez Canal University

      Suez Canal University

      Egipto

    5. [5] Department of Mathematics, College of Sciences and Humanities in Al-Kharj, Sattam bin Abdulaziz University
  • Localización: SeMA Journal: Boletín de la Sociedad Española de Matemática Aplicada, ISSN-e 2254-3902, ISSN 2254-3902, Vol. 80, Nº. 1, 2023, págs. 131-158
  • Idioma: inglés
  • DOI: 10.1007/s40324-021-00271-0
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  • Resumen
    • The aim of this work is to analytically investigate the nonlinear dynamic behaviors of a proposed reduced Lorenz system based on q-deformations. The effects of varying the new q-deformation parameter on the dynamical behaviors of the system along with the induced bifurcations of fixed points are explored. In particular, the codimension-one bifurcation analysis is carried out at interior fixed point of the q-deformed system. Explicit conditions for the existence of pitchfork and Neimark–Sacker bifurcations are obtained. Numerical simulations are performed to confirm stability and bifurcation analysis in addition to investigate the effects of variations in system parameters. The changes in system dynamics are explored via the bifurcation diagrams, phase portraits and time series diagrams. Moreover, the quantification of system complex behaviors is depicted through the maximal Lyapunov exponent plots. A cascaded version of the model is proposed to boost its complex dynamics. Then, a chaos-based image encryption scheme, relying on a proposed key-distribution algorithm, is introduced as an application. Finally, several aspects of security analysis are examined for the encryption system to prove its efficiency and reliability against possible attacks.


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