DocumentCode :
2355830
Title :
A 3-DOF modular vibration isolation system using zero-power magnetic suspension with adjustable negative stiffness
Author :
Hoque, Md Emdadul ; Mizuno, Takeshi ; Ishino, Yuji ; Takasaki, Masaya
Author_Institution :
Dept. of Mech. Eng., Saitama Univ., Saitama, Japan
fYear :
2010
fDate :
21-24 March 2010
Firstpage :
661
Lastpage :
666
Abstract :
This paper presents a 3-DOF vibration isolation system combining three vibration isolation modules. Each vibration isolation module is constructed by connecting a positive stiffness spring in series with a negative stiffness spring. The positive and negative spring is realized by an active controlled magnetic suspension. In the previous system, conventional zero-power control system has been used to generate negative stiffness, and the stiffness depends on the capacity of the permanent magnets or the gap-force coefficient of the magnets. This is one of the bottlenecks in the fields of application of zero-power control where the adjustment of stiffness is necessary. On the other hand, the suspension system was used in the vertical and horizontal directions, which made the system complicated. To overcome the above problems, a vibration isolation system is developed with three modules connected by parallel mechanism. Some experiments have been carried out to measure the efficacy of the control system, as well as the vibration isolation system.
Keywords :
elastic constants; springs (mechanical); vibration isolation; adjustable negative stiffness; modular vibration isolation system; negative stiffness spring; parallel mechanism; permanent magnets; positive stiffness spring; zero-power magnetic suspension; Control systems; Costs; Force control; Magnetic field measurement; Magnetic levitation; Magnetic sensors; Permanent magnets; Springs; Vibration control; Vibration measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Motion Control, 2010 11th IEEE International Workshop on
Conference_Location :
Nagaoka, Niigata
ISSN :
1943-6572
Print_ISBN :
978-1-4244-6668-9
Electronic_ISBN :
1943-6572
Type :
conf
DOI :
10.1109/AMC.2010.5464051
Filename :
5464051
Link To Document :
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