DocumentCode :
1630719
Title :
Linear Quadratic Regulator and Fuzzy controller application in full-car model of suspension system with Magnetorheological shock absorber
Author :
Jahromi, Ali Fellah ; Zabihollah, A.
fYear :
2010
Firstpage :
522
Lastpage :
528
Abstract :
A novel semi-active control system for suspension systems of passenger car using Magnetorheological (MR) damper is introduced. The suspension system is considered as a mass-spring model with a seven-degrees-of-freedom, a passive damper and an active damper. The semi-active vibration control is designed to reduce the amplitude of automotive vibration caused by the alteration of road profile. The control mechanism is designed based on the optimal control algorithm and Fuzzy logic, Linear Quadratic Regulator (LQR) and Fuzzy controller. In this system, the damping coefficient of the shock absorber changes actively through inducing magnetic field. It is observed that utilizing the present control algorithm may significantly reduce the vibration response of the passenger car and eliminate effect of the disturbance in the system, thus, providing comfortable drive. The new developed suspension system may lead to design and manufacturing of passenger car in which the passenger may not feel the changes in road profile from highly bumpy to smooth profile.
Keywords :
automobiles; automotive components; design engineering; fuzzy control; linear quadratic control; magnetic fields; magnetorheology; optimal control; shock absorbers; springs (mechanical); vibration control; alteration; automotive vibration; control mechanism; damping coefficient; full-car model; fuzzy controller application; fuzzy logic; inducing magnetic field; linear quadratic regulator; magnetorheological damper; magnetorheological shock absorber; mass-spring model; optimal control algorithm; passenger car; road profile; semiactive vibration control; seven-degrees-of-freedom; suspension system; vibration response; Shock absorbers; Linear quadratic regulator; Magnetorheological damper; full-car; fuzzy controller; suspension system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics and Embedded Systems and Applications (MESA), 2010 IEEE/ASME International Conference on
Conference_Location :
Qingdao, ShanDong
Print_ISBN :
978-1-4244-7101-0
Type :
conf
DOI :
10.1109/MESA.2010.5552010
Filename :
5552010
Link To Document :
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