Mathematical Problems in Engineering
Volume 6 (2001), Issue 6, Pages 557-598
doi:10.1155/S1024123X00001484
Mixed H2/H∞ control of flexible structures
LAC-DT/School of Electrical and Computer Engineering, UNICAMP, C.P. 6101, Campinas 13081-970, SP, Brazil
Received 18 January 2000
Copyright © 2001 D. P. De Farias et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Abstract
This paper addresses the design of full order linear dynamic output feedback controllers for flexible structures. Unstructured H∞
uncertainty models are introduced for systems in modal coordinates and in reduced order form. Then a controller is designed in order to minimize a given H2
performance function while keeping the maximum supported H∞
perturbation below some appropriate level. To solve this problem we develop an algorithm able to provide local optimal solutions to optimization problems with convex constraints and non-convex but differentiable objective functions. A controller design procedure based on a trade-off curve is proposed and a simple example is solved, providing a comparison between the proposed method and the usual minimization of an upper bound H2
to the norm. The method is applied to two different flexible structure theoretical models and the properties of the resulting controllers are shown in several simulations.