DocumentCode :
527690
Title :
Fuzzy cerebellar model articulation controller (FCMAC) for vibration control on ocean engineering vehicles
Author :
Wang, Shiming ; Wu, Aiping
Author_Institution :
Eng. Inst., Shanghai Ocean Univ., Shanghai, China
Volume :
1
fYear :
2010
fDate :
10-12 Aug. 2010
Firstpage :
297
Lastpage :
302
Abstract :
In this paper, it was studied the semi-active quarter-coach suspension based on ocean engineering vehicles. The physical model of semi-active quarter-coach suspension was established based on the theories of Buckingham´s Pi theorem. According to the characteristics of the semi-active suspension, a new intelligent control algorithm based on the Fuzzy logic control and cerebellar model articulation control techniques-Fuzzy cerebellar model articulation control (FCMAC) was presented and used to perform online control of semi-active suspension for the first time, novel weight-update laws were derived that guarantee the stability of closed-loop system, both information retrieval and learning rules were described by algebraic equations in matrix form. The results of experiment of closed-loop excited by three typical vibration signals showed that FCMAC control strategy can reduce the value of mean square root of vertical acceleration of semi-active suspension system to be lower 23%, 25% and 18% compared with the traditional control strategy such as PID.
Keywords :
brain models; closed loop systems; fuzzy control; intelligent control; learning (artificial intelligence); stability; three-term control; vehicles; vibration control; Buckingham Pi theorem; FCMAC; PID; algebraic equations; closed-loop system; fuzzy cerebellar model articulation controller; fuzzy logic control; information retrieval; intelligent control algorithm; learning rules; matrix form; mean square root; ocean engineering vehicles; semiactive quarter-coach suspension; stability; vibration control; Mathematical model; Oceans; Roads; Servomotors; Suspensions; Valves; Vehicles; FCMAC; Intelligent Control; ocean engineering vehicle; physical model; semi-active suspension;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Natural Computation (ICNC), 2010 Sixth International Conference on
Conference_Location :
Yantai, Shandong
Print_ISBN :
978-1-4244-5958-2
Type :
conf
DOI :
10.1109/ICNC.2010.5583835
Filename :
5583835
Link To Document :
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