Journal Article

·2016

Vibration reduction of semi-trailer truck using MR dampers: A fuzzy logic control approach

İlkay Kurt YTU , Mahmut Paksoy YTU , Şaban Çetin YTU , Rahmi Güçlü YTU , Semih Sezer YTU

Abstract

This paper presents a semi-active fuzzy logic control (FLC) strategy designed for a semi-trailer truck suspension system which consists of magnetorheological (MR) damper and linear spring. The objective of the controller is to improve the ride comfort by suppressing the vibrations that result from the road irregularities. The dynamic system is modelled in MATLAB/Simulink simulation environment. Simulations are carried out under standardized random road excitation generated according to ISO 8608 to investigate dynamic behaviour of seven degrees of freedom (DOFs) semi-trailer truck model. The Bouc-Wen model is utilized to characterize the hysteresis phenomenon of the MR dampers. Performance of designed controller is evaluated and the results indicate the effectiveness of the applied control algorithm on the vibration reduction compared to uncontrolled suspension system.

Keywords

Damper Magnetorheological fluid Reduction (mathematics) Control theory (sociology) Vibration MATLAB Truck Fuzzy logic Trailer Controller (irrigation) Suspension (topology) Engineering Fuzzy control system Computer science Magnetorheological damper Automotive engineering Structural engineering Control (management) Mathematics Artificial intelligence Acoustics Physics

Subject Areas

Vibration Control and Rheological Fluids ·Civil and Structural Engineering ·Physical Sciences
Seismic Performance and Analysis ·Civil and Structural Engineering ·Physical Sciences
Vehicle Dynamics and Control Systems ·Automotive Engineering ·Physical Sciences