DocumentCode :
2117430
Title :
Optimal Design and Experimental Study of the Active Vibration Isolation System Based on NCGA Algorithm
Author :
Yan, ZhengTao ; Mao, WeiMin ; Weng, Xuetao
Author_Institution :
Ship & Power Eng. Inst., Naval Univ. of Eng., Wuhan, China
Volume :
2
fYear :
2010
fDate :
7-8 Aug. 2010
Firstpage :
286
Lastpage :
290
Abstract :
In order to solve the Multi-objective optimization(MOO) problem in active vibration isolation (AVI) system based on flexible foundation, Four-terminal parameter method is introduced in the paper to analysis the power flow transfer characteristics of a two-stage AVI system. Through systematic analysis, the vibration isolation question can be viewed as a MOO problem and then we can take the advantages of neighborhood propagation genetic algorithms (NCGA) in MOO, employ iSIGHT software to optimize the control system parameters, finally get the Pareto optimal solution. Background on the optimal parameters, an experiment is designed, which the results show that when the air springs were utilized as passive vibration isolation (PVI) components and electromagnetic actuator as an AVI components in a vibration isolation system, we can get significantly integrated isolation performance. It also certified NCGA´s effectiveness in the aspect of multi-objective optimization.
Keywords :
CAD; Pareto optimisation; genetic algorithms; mechanical engineering computing; vibration isolation; NCGA algorithm; Pareto optimal solution; active vibration isolation system; flexible foundation; iSIGHT software; multiobjective optimization problem; neighborhood propagation genetic algorithms; optimal design; passive vibration isolation components; power flow transfer; Acceleration; Isolators; Load flow; Optimization; Software; Springs; Vibrations; NCGA; Optimized design; Two-stage active vibration isolation (AVI) system; iSIGHT software;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Science and Management Engineering (ISME), 2010 International Conference of
Conference_Location :
Xi´an
Print_ISBN :
978-1-4244-7669-5
Electronic_ISBN :
978-1-4244-7670-1
Type :
conf
DOI :
10.1109/ISME.2010.198
Filename :
5573826
Link To Document :
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