DocumentCode :
3582236
Title :
Simulation of active vibration suppression using internal motor sensing
Author :
Abeysiriwardhana, W. A. Shanaka P. ; Abeykoon, A. M. Harsha S.
Author_Institution :
Dept. of Electr. Eng., Univ. of Moratuwa, Moratuwa, Sri Lanka
fYear :
2014
Firstpage :
1
Lastpage :
6
Abstract :
Suppression of unnecessary vibration is an important aspect in control system design. Passive, semi active, and active suspension systems are used in vehicles to suppress vibrations and theoretically active suspension systems provide superior performance than the prior two types. This paper proposes a novel method to suppress vibrations using internal motor sensing method. The proposed active vibration suppression system uses a reaction force observer to measure and suppress vibrations acting on the system without using environmental sensors. The motor forcer acceleration and a current sensor measurements are used by the reaction force observer to measure the vibration forces in the system. The proposed system performed system performance, robustness, and applicability is evaluated using quarter car suspension system model. The proposed system is simulated for different conditions to measure the system vibration suppression capabilities. The simulation results provide evidence of robust vibration suppression capabilities and applicability of the controller for real world applications.
Keywords :
automobiles; force control; force measurement; observers; suspensions (mechanical components); vehicle dynamics; vibration control; vibration measurement; active vibration suppression simulation; control system design; current sensor measurements; internal motor sensing method; motor forcer acceleration; passive suspension systems; quarter car suspension system model; reaction force observer; semiactive suspension systems; vibration force measurement; Equations; Force; Mathematical model; Sensors; Suspensions; Vehicles; Vibrations; Active suspension; Active vibration suppression; Disturbance observer; Force control; Passive suspension; Reaction force observer;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information and Automation for Sustainability (ICIAfS), 2014 7th International Conference on
Type :
conf
DOI :
10.1109/ICIAFS.2014.7069562
Filename :
7069562
Link To Document :
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