Semiactive Self-Tuning Fuzzy Logic Control of Full Vehicle Model with MR Damper

Author:

Paksoy Mahmut1,Guclu Rahmi1,Cetin Saban1

Affiliation:

1. Mechanical Engineering Department, Yıldız Technical University, 34349 Istanbul, Turkey

Abstract

Intelligent controllers are studied for vibration reduction of a vehicle consisting in a semiactive suspension system with a magnetorheological(MR) damper. The vehicle is modeled with seven degrees of freedom as a full vehicle model. The semiactive suspension system consists of a linear spring and an MR damper. MR damper is modeled using Bouc-Wen hysteresis phenomenon and applied to a full vehicle model. Fuzzy Logic based controllers are designed to determine the MR damper voltage. Fuzzy Logic and Self-Tuning Fuzzy Logic controllers are applied to the semiactive suspension system. Results of the system are investigated by simulation studies in MATLAB-Simulink environment. The performance of the semiactive suspension system is analyzed with and without control. Simulation results showed that both Fuzzy Logic and Self-Tuning Fuzzy Logic controllers perform better compared to uncontrolled case. Furthermore, Self-Tuning Fuzzy Logic controller displayed a greater improvement in vibration reduction performance compared to Fuzzy Logic controller.

Publisher

SAGE Publications

Subject

Mechanical Engineering

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1. Semi-Active Road-Vehicle Dynamics by implementing Neuro-Fuzzy Controlled damper;2022 19th International Conference on Electrical Engineering, Computing Science and Automatic Control (CCE);2022-11-09

2. Modifying Vibratory Behavior of the Car Seat to Decrease the Neck Injury;Journal of Vibration Engineering & Technologies;2022-07-28

3. Comparative analysis of full car model with driver using PID and LQR controllers;International Journal of Automotive Science And Technology;2022-05-30

4. Vehicle body pitch control through integration of MR damping system implemented in both vehicle suspension and front-end structure;Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering;2022-03-08

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