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MR-damped Vehicle Suspension Ride Comfort Enhancement Based on an intelligent Proportional-Integral- Differential Sliding Mode Control

Authors
  • Ahmed Osman Bashir

    Institute of Launch Dynamics, Nanjing University of Science and Technology, Nanjing 210094, P R China

  • Xiaoting Rui

    Institute of Launch Dynamics, Nanjing University of Science and Technology, Nanjing 210094, P R China

  • Laith Kalid Abbas

    Institute of Launch Dynamics, Nanjing University of Science and Technology, Nanjing 210094, P R China

  • Qinbo Zhou

    Institute of Launch Dynamics, Nanjing University of Science and Technology, Nanjing 210094, P R China

Abstract

Abstract: This paper presents an intelligent proportional-integral- differential sliding mode control (i-PIDSMC) for semi-active vehicle suspension system integrated magnetorheological (MR) fluid damper to meliorate vehicle ride quality and stability. The proposed approach is composed of a system controller based on i-PIDSMC to computes the desired damping force. The system controller is contains two sub-components: (i) a proportional-integral-differential part for disturbance compensation, and (ii) a sliding mode part for executing disturbance estimation errors. Another controller is a continuous state controller which judges the command voltage that is needed to track the desired damping force. Dynamic model of quarter vehicle suspension system is presented and simulated using Matlab/Simulink software. The results of the proposed i-PIDSMC controlled system is compared to conventional sliding mode controller (SMC), conventional PID controller and the passive suspension system. The performance criteria are evaluated in time domain using two types of road excitation. The simulated results indicate that the proposed controller guarantee a significant improvement in vehicle ride quality and stability.

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Published
2018-12-20
Section
Articles