Title
Experimental Validation of Linear Matrix Inequality Based H<inf>2</inf> Full State Feedback Controllers on a 3-DoF 4-Pole Hybrid Electromagnetic Vibration Isolation Stage
Abstract
In recent years, linear matrix inequality-based design of controllers has received considerable attention and become very popular due to their ability to satisfy multiobjective requirements. However, an LMI based H2 state-feedback controller, having gap and acceleration parameters as states, for a 3 DoF vibration isolation stage having hybrid electromagnets, has not been researched yet. In this study, this type of controller is employed to minimize the effect of ground and direct disturbances on vibration isolation, zero-power, and protection of the levitation gap objectives. Moreover, the experimental setup used in this study has been designed to meet aforementioned objectives as well. The design parameters of the experimental setup are explicitly given and the effectiveness of the proposed method is shown with the experimental studies.
Year
DOI
Venue
2019
10.1109/ICMECH.2019.8722873
2019 IEEE International Conference on Mechatronics (ICM)
Keywords
Field
DocType
Vibrations,Electromagnets,Permanent magnets,Acceleration,Magnetic levitation,State feedback
Full state feedback,Control theory,Vibration isolation,Control engineering,Engineering,Linear matrix inequality
Conference
Volume
ISBN
Citations 
1
978-1-5386-6959-4
0
PageRank 
References 
Authors
0.34
0
3
Name
Order
Citations
PageRank
Bariş Can Yalçin100.34
Ahmet Fevzi Bozkurt200.68
Kadir Erkan301.01