Vibration reduction of a non‑linear ship model using positive position feedback controllers

Faculty Science Year: 2021
Type of Publication: ZU Hosted Pages:
Authors:
Journal: International Journal of Dynamics and Control Springer Volume:
Keywords : Vibration reduction of a non‑linear ship model using    
Abstract:
In this paper, a four-degree-of-freedom (4-DOF) of coupled pitch-roll ship model including two positive position feedback controllers (PPF) are considered appropriate to reduce the vibration of the ship model system (coupled pitch and roll modes) at primary resonance excitation (Ω 1 ≅ 휔 1 , Ω2 ≅ 휔 2 ) in the presence of 1:1 internal resonance (휔 3 ≅ 휔 1 , 휔 4 ≅ 휔 2 ) . The multiple time scales perturbation method (MSPM) is applied to get the perturbation solution and all resonance cases. The response studies for both the open and closed-loop systems are showed numerically by using the Runge–Kutta fourth-order (RK-4) method (package ode45 in Matlab R2014a). The PPF controllers succeed in reducing the vibration amplitudes for the ship model system reaches to 0.001 with a reduction rate of 99.85% for the frst mode (roll) and reaches to 0.0003 with reduction rate 99.90% for the second mode (pitch). This clarifes that the PPF controller is an excellent control to reduce the vibration for the system. Then, the frequency response equations and the stability analysis are determined according to the Routh–Hurwitz criterion. The efects of diferent parameters are studied numerically for the main-system and controller with the same used values of the vibrating system. Validation between numerical solutions, perturbation solution and frequency response solutions are studied. Finally, a comparison is performed with earlier published work.
   
     
 
       

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