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Chaotic Assessment of the Heave and Pitch Dynamics Motions of Air Cushion Vehicles

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  • Ahmed Sowayan

    (Imam Mohammad Ibn Saud Islamic University, Saudi Arabia)

Abstract

In this study, three degrees of freedom nonlinear air cushion vehicle (ACV) model is introduced to examine the dynamic behavior of the heave and pitch responses in addition to the cushion pressure of the ACV in both time and frequency domains. The model is based on the compressible flow Bernoulli's equation and the thermodynamics nonlinear isentropic relations along with the Newton’s second law of translation and rotation. In this study, the dynamical investigation was based on numerical simulation using the stiff ODE solvers of the Matlab software. The chaotic investigations of the proposed model is provided using the Fast Fourier Transform (FFT), the Poincaré maps, and the regression analysis. Three control design parameters are investigated for the chaotic studies. These parameters are: ACV mass (M), the mass flowrate entering the cushion volume (m ̇_in), and the ACV base radius (r). Chaos behavior was observed for heave, and pitch responses as well as the cushion pressure.

Suggested Citation

  • Ahmed Sowayan, 2021. "Chaotic Assessment of the Heave and Pitch Dynamics Motions of Air Cushion Vehicles," International Journal of System Dynamics Applications (IJSDA), IGI Global, vol. 10(4), pages 1-27, October.
  • Handle: RePEc:igg:jsda00:v:10:y:2021:i:4:p:1-27
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    References listed on IDEAS

    as
    1. Saeed Balochian & Nahid Rajaee, 2018. "Fractional-Order Optimal Control of Fractional-Order Linear Vibration Systems with Time Delay," International Journal of System Dynamics Applications (IJSDA), IGI Global, vol. 7(3), pages 72-93, July.
    2. Pushali Trikha & Lone Seth Jahanzaib, 2020. "Dynamical Analysis of a Novel 4-D Hyper-Chaotic System With One Non-Hyperbolic Equilibrium Point and Application in Secure Communication," International Journal of System Dynamics Applications (IJSDA), IGI Global, vol. 9(4), pages 74-99, October.
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