Title :
Simulation on active vibration suppression using virtual spring-damper combination
Author :
Abeyrathna, P.A.M.M.B. ; Abeysiriwardhana, W.A.S.P. ; Amarasinghe, S.W. ; Ariyasinghe, W.M.S.L. ; Abeykoon, A. M. Harsha S.
Author_Institution :
Dept. of Electr. Eng., Univ. of Moratuwa, Moratuwa, Sri Lanka
Abstract :
Active suspension is an emerging technology used to improve the contact, comfort and control of vehicles and in other vibration suppression applications. Different methods are used to control the actuator force exerted between the sprung mass and unsprung mass in order to achieve the active suspension. Most of the other research areas have introduced LQR controllers, Fuzzy logic controller methodologies. But this paper presents a control method based on a virtual spring-damper combination. A linear motor model is expected to be used as the actuator in realizing the values of the virtual spring damper. The simulation results show the sprung mass displacement with and without the active suspension when subjected to a large disturbance. The success and the limitations of the proposed virtual spring-damper combination are discussed with the simulation results.
Keywords :
automotive components; force control; linear motors; shock absorbers; springs (mechanical); vibration control; active vibration suppression; actuator force control; automobileautomobile suspension system; linear motor model; sprung mass displacement; unsprung mass; virtual spring-damper combination; Modeling; Shock absorbers; Switches; Active suspension; Passive suspension; Vibration suppression; Virtual spring-damper;
Conference_Titel :
Circuits, Controls and Communications (CCUBE), 2013 International conference on
Conference_Location :
Bengaluru
Print_ISBN :
978-1-4799-1599-6
DOI :
10.1109/CCUBE.2013.6718552