μ-Analysis and μ-Synthesis Control Methods in Smart Structure Disturbance Suppression with Reduced Order Control

Author:

Moutsopoulou Amalia1,Petousis Markos1ORCID,Stavroulakis Georgios E.2ORCID,Pouliezos Anastasios2,Vidakis Nectarios1

Affiliation:

1. Department of Mechanical Engineering, Hellenic Mediterranean University, 71410 Heraklion Crete, Greece

2. Department of Production Engineering and Management, Technical University of Crete, 73100 Chania, Greece

Abstract

In this study, we created an accurate model for a homogenous smart structure. After modeling multiplicative uncertainty, an ideal robust controller was designed using μ-synthesis and a reduced-order H-infinity Feedback Optimal Output (Hifoo) controller, leading to the creation of an improved uncertain plant. A powerful controller was built using a larger plant that included the nominal model and corresponding uncertainty. The designed controllers demonstrated robust and nominal performance when handling agitated plants. A comparison of the results was conducted. As an example of a general smart structure, the vibration of a collocated piezoelectric actuator and sensor was controlled using two different approaches with strong controller designs. This study presents a comprehensive simulation of the oscillation suppression problem for smart beams. They provide an analytical demonstration of how uncertainty is introduced into the model. The desired outcomes were achieved by utilizing Simulink and MATLAB (v. 8.0) programming tools.

Publisher

MDPI AG

Subject

Computational Mathematics,Computational Theory and Mathematics,Numerical Analysis,Theoretical Computer Science

Reference49 articles.

1. New Shear Actuated Smart Structure Beam Finite Element;Benjeddou;AIAA J.,1999

2. Flexible Piezoelectric Structures-Approximate Motion Equations and Control Algorithms;Bona;IEEE Trans. Autom. Control,1997

3. Okko, B., Kwakernaak, H., and Gjerrit, M. (2001). Design Methods for Control Systems, Dutch Institute of Systems and Control.

4. Stabilization via Nonsmooth, Nonconvex Optimization;Burke;IEEE Trans. Autom. Control,2006

5. A Robust Gradient Sampling Algorithm for Nonsmooth, Nonconvex Optimization;Burke;SIAM J. Optim.,2005

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