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Intelligent vibration control of micro-cantilever beam in MEMS

Sarrafan, A ; Sharif University of Technology | 2011

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  1. Type of Document: Article
  2. DOI: 10.1109/ICMECH.2011.5971306
  3. Publisher: 2011
  4. Abstract:
  5. Considerable attention has been devoted recently to vibration control using intelligent materials as sensor/actuator. An intelligent control technique using a neural network is proposed for vibration control of micro-cantilever beam with bonded piezoelectric sensor and actuator. Structure modal characteristic analysis is done to determine the optimal configuration of piezoelectric sensor and actuator. With the piezoelectric elements are surface-bonded near the same position to the fixed end of micro-cantilever beam, an optimal controller, linear quadratic Gaussian (LQG), and an intelligent strategy based on neural network are investigated. Finally, the simulation results are given to demonstrate the effectiveness of the control method in this paper, neural network scheme has strong robustness to Gaussian disturbance compared with the LQG control method. Moreover, it is shown that vibration of micro-cantilever beam in MEMS can be significantly suppressed by the proposed neural network strategy
  6. Keywords:
  7. MEMS ; Active vibration controls ; Control methods ; Gaussians ; Linear quadratic Gaussian ; LQG control ; Microcantilever beams ; Network strategy ; Optimal configurations ; Optimal controller ; Piezoelectric elements ; Piezoelectric sensor and actuator ; Simulation result ; Structure modal ; Actuators ; Cantilever beams ; Computer simulation ; Electric sensing devices ; Gaussian beams ; Intelligent control ; Intelligent materials ; Mechatronics ; Nanocantilevers ; Optimization ; Piezoelectric transducers ; Piezoelectricity ; Pile foundations ; Sensors ; Vibration control ; Neural networks
  8. Source: 2011 IEEE International Conference on Mechatronics, ICM 2011 - Proceedings, 13 April 2011 through 15 April 2011, Istanbul ; April , 2011 , Pages 336-341 ; 9781612849836 (ISBN)
  9. URL: http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=5971306